Peer reviewed papers and Books

2024

  • Kober T, Bautz R, Panos E, Wan Y, McKenna R, Fuchs A, et al.
    Saisonale Gasspeicher in der Schweiz
    Aqua & Gas. 2024; 104(5): 34-39.
    DORA PSI
  • Luh S, Kannan R, McKenna R, Schmidt TJ, Kober T
    Quantifying the impact of travel time duration and valuation on modal shift in Swiss passenger transportation
    Applied Energy. 2024; 356: 122412 (26 pp.). https://doi.org/10.1016/j.apenergy.2023.122412
    DORA PSI
  • Panos E, Hassan A
    Accelerating the performance of large-scale TIMES models in the modelling of sustainable development goals
    In: Labriet M, Espegren K, Giannakidis G, Gallachóir BÓ, eds. Aligning the energy transition with the sustainable development goals. Key insights from energy system modelling. Lecture notes in energy. Cham: Springer Nature; 2024:67-95. https://doi.org/10.1007/978-3-031-58897-6_4
    DORA PSI
  • Stermieri L, Kober T, McKenna R, Schmidt TJ, Panos E
    The role of digital social practices and technologies in the Swiss energy transition towards net-zero carbon dioxide emissions in 2050
    Energy Policy. 2024; 193: 114203 (17 pp.). https://doi.org/10.1016/j.enpol.2024.114203
    DORA PSI

2023

  • Luh S, Kannan R, McKenna R, Schmidt TJ, Kober T
    How, where, and when to charge electric vehicles - net-zero energy system implications and policy recommendations
    Environmental Research Communications. 2023; 5(9): 095004 (30 pp.). https://doi.org/10.1088/2515-7620/acf363
    DORA PSI
  • Nogueira L, Dalla Longa F, Reis LA, Drouet L, Vrontisi Z, Fragkiadakis K, et al.
    A multi-model framework to assess the role of R&D towards a decarbonized energy system
    Climatic Change. 2023; 176(7): 82 (22 pp.). https://doi.org/10.1007/s10584-023-03553-w
    DORA PSI
  • Obrist MD, Kannan R, McKenna R, Schmidt TJ, Kober T
    High-temperature heat pumps in climate pathways for selected industry sectors in Switzerland
    Energy Policy. 2023; 173: 113383 (20 pp.). https://doi.org/10.1016/j.enpol.2022.113383
    DORA PSI
  • Panos E, Kannan R, Hirschberg S, Kober T
    An assessment of energy system transformation pathways to achieve net-zero carbon dioxide emissions in Switzerland
    Communications Earth & Environment. 2023; 4(1): 157 (18 pp.). https://doi.org/10.1038/s43247-023-00813-6
    DORA PSI
  • Panos E, Glynn J, Kypreos S, Lehtilä A, Yue X, Ó Gallachóir B, et al.
    Deep decarbonisation pathways of the energy system in times of unprecedented uncertainty in the energy sector
    Energy Policy. 2023; 180: 113642 (18 pp.). https://doi.org/10.1016/j.enpol.2023.113642
    DORA PSI
  • Stermieri L, Kober T, Schmidt TJ, McKenna R, Panos E
    "Quantifying the implications of behavioral changes induced by digitalization on energy transition: a systematic review of methodological approaches"
    Energy Research and Social Science. 2023; 97: 102961 (19 pp.). https://doi.org/10.1016/j.erss.2023.102961
    DORA PSI
  • Stermieri L, Kober T, McKenna R, Schmidt TJ, Panos E
    Impacts of digitalization and societal changes on energy transition: a novel socio-techno-economic energy system model
    Energy Strategy Reviews. 2023; 50: 101224 (18 pp.). https://doi.org/10.1016/j.esr.2023.101224
    DORA PSI
  • Wan Y, Kober T, Schildhauer T, Schmidt TJ, McKenna R, Densing M
    Conditions for profitable operation of P2X energy hubs to meet local demand under to with energy market access
    Advances in Applied Energy. 2023; 10: 100127 (16 pp.). https://doi.org/10.1016/j.adapen.2023.100127
    DORA PSI

2022

  • Densing M, Wan Y
    Low-dimensional scenario generation method of solar and wind availability for representative days in energy modeling
    Applied Energy. 2022; 306(B): 118075 (17 pp.). https://doi.org/10.1016/j.apenergy.2021.118075
    DORA PSI
  • Kannan R, Panos E, Hirschberg S, Kober T
    A net‐zero Swiss energy system by 2050: technological and policy options for the transition of the transportation sector
    Futures & Foresight Science. 2022; 4(3-4): e126 (22 pp.). https://doi.org/10.1002/ffo2.126
    DORA PSI
  • Luh S, Kannan R, Schmidt TJ, Kober T
    Behavior matters: a systematic review of representing consumer mobility choices in energy models
    Energy Research and Social Science. 2022; 90: 102596 (23 pp.). https://doi.org/10.1016/j.erss.2022.102596
    DORA PSI
  • Obrist MD, Kannan R, Schmidt TJ, Kober T
    Long-term energy efficiency and decarbonization trajectories for the Swiss pulp and paper industry
    Sustainable Energy Technologies and Assessments. 2022; 52: 101937 (14 pp.). https://doi.org/10.1016/j.seta.2021.101937
    DORA PSI
  • Reigstad GA, Roussanaly S, Straus J, Anantharaman R, de Kler R, Akhurst M, et al.
    Moving toward the low-carbon hydrogen economy: experiences and key learnings from national case studies
    Advances in Applied Energy. 2022; 8: 100108 (14 pp.). https://doi.org/10.1016/j.adapen.2022.100108
    DORA PSI
  • Rüdisüli M, Bach C, Bauer C, Beloin-Saint-Pierre D, Elber U, Georges G, et al.
    Prospective life-cycle assessment of greenhouse gas emissions of electricity-based mobility options
    Applied Energy. 2022; 306(Part B): 118065 (20 pp.). https://doi.org/10.1016/j.apenergy.2021.118065
    DORA PSI
  • Wan Y, Kober T, Densing M
    Nonlinear inverse demand curves in electricity market modeling
    Energy Economics. 2022; 107: 105809 (9 pp.). https://doi.org/10.1016/j.eneco.2022.105809
    DORA PSI

2021

  • Burgherr P, Bauer C, Giudati G, Giardini D, Biollaz S, Densing M, et al.
    Sources of primary electricity supply. Synthesis report
    Zurich: ETH; 2021.
    DORA PSI
  • Obrist MD, Kannan R, Schmidt TJ, Kober T
    Decarbonization pathways of the Swiss cement industry towards net zero emissions
    Journal of Cleaner Production. 2021; 288: 125413 (13 pp.). https://doi.org/10.1016/j.jclepro.2020.125413
    DORA PSI
  • Panos E, Kober T, Ramachandran K, Hirschberg S, Bauer C, Schildhauer T, et al.
    Transformation of the Swiss energy system for a net-zero greenhouse gas emission society. Results from the joint activity scenarios & modelling
    Zurich: ETH Zurich; 2021.
    DORA PSI
  • Schneider SF, Novák P, Kober T
    Rechargeable batteries for simultaneous demand peak shaving and price arbitrage business
    IEEE Transactions on Sustainable Energy. 2021; 12(1): 148-157. https://doi.org/10.1109/TSTE.2020.2988205
    DORA PSI
  • Streicher KN, Berger M, Panos E, Narula K, Soini MC, Patel MK
    Optimal building retrofit pathways considering stock dynamics and climate change impacts
    Energy Policy. 2021; 152: 112220 (13 pp.). https://doi.org/10.1016/j.enpol.2021.112220
    DORA PSI

Densing, M., Wan, Y. (2021) Low-dimensional scenario generation method of solar and wind availability for representative days in energy modeling. Applied Energy, 306. p. 118075. https://doi.org/10.1016/j.apenergy.2021.118075

Streicher, K-N., Berger, M., Panos, E., Narula, K., Soini, M-C, Patel, M-K. (2021) Optimal building retrofit pathways considering stock dynamics and climate change impacts. Energy Policy, 152. https://doi.org/10.1016/j.enpol.2021.112220

2020

Obrist, M.D., Kannan, R., Schmidt, T. J., Kober, T. (2020) Decarbonization pathways of the Swiss cement industry towards net zero emissions. Journal of Cleaner Production, 288. https//doi.org/10.1016/j.jclepro.2020.125413

Kober, T., Schiffer, H.-W., Densing, M., Panos, E. (2020) Global energy perspectives to 2060 - WEC's world energy scenarios 2019. Energy Strategy Reviews, 31, pp. 100523. https://doi.org/10.1016/j.esr.2020.100523

Keles, D., Densing, M., Panos, E., Hack, F., Joris, D. (2020). Cross-border Effects in Interconnected Electricity Markets - An Analysis of the Swiss Electricity Prices, Energy Economics 90, pp. 104802. https://doi.org/10.1016/j.eneco.2020.104802(link is external) 

Vandepaer, L., Panos, E., Bauer, C., Armor, B. (2020). Energy System Pathways With Low Environmental Impacts and Limited Costs: Minimizing Climate Change Impacts Produces Environmental Cobenefits and Challenges in Toxicity and Metal Depletion Categories, Environ Sci Technol 2020 54(8): 5081-5092https://doi.org/10.1021/acs.est.9b06484(link is external)

Densing, M. (2020). The value of flexible selling: Power production with storage for spinning reserve provision. European Journal of Operational Research, 281:1, pp. 141-151. https://doi.org/10.1016/j.ejor.2019.08.012.

2019

Landis, F., Marcucci, A., Rausch, S., Kannan, R., Bretschger, L., (2019). Multi-model comparison of Swiss decarbonization scenarios. Swiss Journal of Economics and Statistics 155(1):12.  https://doi.org/10.1186/s41937-019-0040-8

Panos, E., Densing, M. (2019). The future developments of the electricity prices in view of the implementation of the Paris Agreements: Will the current trends prevail, or a reversal is ahead? Energy Economics, 84, pp. 104476. https://doi.org/10.1016/j.eneco.2019.104476

Panos, E., Margelou, S. (2019). Long-Term Solar Photovoltaics Penetration in Single- and Two-Family Houses in Switzerland, Energies, 12 (13), 2460, https://doi.org/10.3390/en12132460

Panos, E., Kober, T., Wokaun, A. (2019). Long term evaluation of electric storage technologies vs alternative flexibility options for the Swiss energy system, Applied Energy, 252https://doi.org/10.1016/j.apenergy.2019.113470

Marcucci, A., Panos, E., Kypreos, S., Fragkos, P. (2019). Probabilistic assessment of realizing the 1.5°C climate target, Applied Energy, 239,  p. 239-251, https://doi.org/10.1016/j.apenergy.2019.01.190

Arango-Aramburo, S., Turner, S., Daenzer, K., Ríos-Ocampo, J., Hejazi, S., Kober, T., Álvarez-Espinosa, A., Romero-Otalora, G., van der Zwaan, B., (2019). Climate impacts on hydropower in Colombia: A multi-model assessment of power sector adaptation pathways, Energy Policy, Vol. 128, p. 179-188, DOI:10.1016/j.enpol.2018.12.057

Sharma, T., Glynn, J., Panos, E., Deane, P., Gargiulo, M., Rogan, F., Ó Gallachóir, B. (2019). High performance computing for energy system optimization models: Enhancing the energy policy tool kit, Energy Policy, Vol. 128, p. 66-74, DOI:10.1016/j.enpol.2018.12.055

2018

Kannan R. (2018). Dynamics of long-term electricity demand profile: Insights from the analysis of Swiss energy systems, Energy Strategy Reviews, Vol. 22, pp. p.410-425, doi:10.1016/j.esr.2018.10.010

Shivakumar, A., Pye, S., Anjo, J., Miller, M., Rouelle, P. B., Densing, M., Kober, T. (2018). Smart energy solutions in the EU: State of play and measuring
progress. Energy Strategy Reviews, Vol. 20, p. 133-149, doi:10.1016/j.esr.2018. 02.005.

Lucena, A., Hejaz, M., Vasquez-Arroyo, E., Turner, S., Köberle, A.C., Daenzer, K., Rochedo P.R.R., Kober, T., Cai, Y., Beach R.H., Gernaat D., van Vuuren, D., van der Zwaan, B. (2018). Interactions between climate change mitigation and adaptation: The case of hydropower in Brazil, Energy, Vol. 164, p. 1161-1177, doi:10.1016/j.energy.2018.09.005

Dalla, F., Strikkers L., Kober T., van der Zwaan, B. (2018). Advancing Energy Access Modelling with Geographic Information System Data, Environmental Modeling & Assessment, p. 1-11, doi:10.1007/s10666-018-9627-1

Volkart, K., Mutel, C. Panos, E. (2018). Integrating life cycle assessment and energy system modelling: Methodology and application to the world energy scenarios, Sustainable Production and Consumption, pp. https://doi.org/10.1016/j.spc.2018.07.001

Frischknecht, R., Bauer, C., Bucher, C., Ellingsen, L., Gutzwiller, L., Heimbach, B., Itten, R., Liao, X., Panos, E., et al. (2018). LCA of key technologies for future electricity supply, The International Journal of Life Cycle Assessment, pp. https://doi.org/10.1007/s11367-018-1496-y

Kypreos, S., Glynn, J. Panos, E., Giannakidis, G., Ó Gallachoir, B. (2018). Efficient and Equitable Climate Change Policies, Systems, Vol. 6(2), 10, https://doi.org/10.3390/systems6020010

Schiffer, HW., Kober, T., Panos, E. (2018). World Energy Council’s Global Energy Scenarios to 2060, Zeitschrift für Energiewirtschaft, Vol. p.1-12, pp. doi.org/10.1007/s12398-018-0225-3

Panos, E., Kannan, R. (2018). Challenges and Opportunities for the Swiss Energy System in Meeting Stringent Climate Mitigation Targets, In Giannakidis G., K. Karlsson, M. Labriet, B. Ó Gallachóir (eds.) Limiting Global Warming to Well Below 2°C: Energy System Modelling and Policy Development, p. 155-172

Yazdanie, M., (2018). Achieving CO2 Emission Reductions Through Local-Scale Energy Systems Planning: Methods and Pathwaysfor Switzerland, In Giannakidis G., K. Karlsson, M. Labriet, B. Ó Gallachóir (eds.) Limiting Global Warming to Well Below 2°C: Energy System Modelling and Policy Development, p. 407-423

Kober, T., Panos, E., Volkart K. (2018). Energy system challenges of deep global CO2 emissions reduction under the World Energy Council’s scenario framework, In Giannakidis G., K. Karlsson, M. Labriet, B. Ó Gallachóir (eds.) Limiting Global Warming to Well Below 2°C: Energy System Modelling and Policy Development, p. 17-31

van der Zwaan, B., Halstead, M., Kober, T. (2018). Water Stress Implications of Energy Scenarios for the Middle East: an Assessment of Risks and Uncertainties, In TRANSrisk Special Edition in Springer “Understanding risks and uncertainties in energy and climate policy: Multidisciplinary methods and tools towards a low carbon society”, Vol. Downland, pp. Doi: 10.1007/978-3-030-03152-7_6

van der Zwaan, B., Kober, T. Longa, F.D., van der Laan, A., Kramer G.J., (2018). An Integrated Assessment of Pathways for Low-Carbon Development in Africa, Energy Policy, Vol. 117, pp. 387-395, doi: 10.1016/j.enpol.2018.03.017

Yazdanie, M., Densing, M., Wokaun, A. (2018). The nationwide characterization and modeling of local energy systems: quantifying the role of decentralized generation and energy resources in future communities, Energy Policy, Vol. 118, pp. 516-533, doi: 10.1016/j.enpol.2018.02.045

2017

Marcucci,A., Kypreos, S., Panos, E. (2017). The road to achieving the long-term Paris targets: energy transition and the role of direct air capture, Climatic Change, https://doi.org/10.1007/s10584-017-2051-8

Bjørndal, E., Bjørndal, M., Cai, H., Panos, E., (2017). Hybrid pricing in a coupled European power market with more wind power, European Journal of Operational Research, http://dx.doi.org/10.1016/j.ejor.2017.06.048

Normark, B., A. Faure-Schuyer, A. Shivakumar, C. Taliotis, P. Deane, J. Gottschling, R. Pattupara, R. Kannan, D. Jakšić, K. Stupin and R. V. Hemert (2017). Storage Solutions and Their Value, Europe's Energy Transition - Insights for Policy Making, Vol. ELSEVIER, ISBN 978-0-128098-06-6 link, pp. 173-187

Shivakumar, A., C. Taliotis, P. Deane, J. Gottschling, R. Pattupara, R. Kannan, D. Jakšić, K. Stupin, R. V. Hemert, B. Normark and A. Faure-Schuyer (2017). Need for Flexibility and Potential Solutions, Europe's Energy Transition - Insights for Policy Making, Vol. ELSEVIER, ISBN 978-0-128098-06-6 link, pp. 149-172

Yazdanie, M., Densing, M., Wokaun, A. (2017). Cost optimal urban energy systems planning in the context of national energy policies: A case study for the city of Basel, Energy Policy, Vol. 110, pp. 176–190, doi: 10.1016/j.enpol.2017.08.009

Arias-Gaviria, J., van der Zwaan, B., Kober, T., Arango-Aramburo, S. (2017). The prospects for Small Hydropower in Colombia, Renewable Energy, Vol. 107, pp. 204-214, DOI: 10.1016/j.renene.2017.01.054

Welsch, M., Volkart, K., Densing, M., et al. (2017). The Role of Fuel Cells and Hydrogen in Stationary Applications, Europe's Energy Transition - Insights for Policy Making (Ch. 23), pp. 189-205, ELSEVIER, ISBN 978-0-128098-06-6 link

Volkart K., Weidmann-Ordóñez N., Bauer C., Hirschberg S. (2017). Multi-criteria decision analysis of energy system transformation pathways: A case study for Switzerland, Energy Policy, Vol. 106, pp. 155–168, DOI: 10.1016/j.enpol.2017.03.026

Collins, S., Dean, JP, Poncelet, K., Panos, E., Pietzcker, R., Delarue, E., Ó Gallachóir, B. (2017). Integrating short term variations of the power system into integrated energy system models: A methodological review, Renewable and Sustainable Energy Reviews, Vol. 76, pp. 839-856, http://dx.doi.org/10.1016/j.rser.2017.03.090

2016

Kypreos, S., Lehtila, A. (2016). From Copenhagen to Durban and the challenge for sustainable levels of GHG concentrations, International Journal of Global Energy Issues (IJGEI), Vol. 39(5), pp. 839-856, http://dx.doi.org/10.1504/IJGEI.2016.078702

Jewell, J., Vinichenko, V., McCollum, D., Bauer, N., Riahi, K., Aboumahboub, T., Fricko, O., Harmsen, M., Kober, T., Krey, V., Marangoni, G., Tavoni, M., van Vuuren, D., van der Zwaan, B., Cherp, A. (2016). Comparison and interactions between the long-term pursuit of energy independence and climate policies, Nature Energy, Vol. Vol. 1, pp. Article number: 16073, DOI: 10.1038/nenergy.2016.73

Kannan, R., Hirschberg S. (2016). Interplay between electricity and transport sectors – Integrating the Swiss car fleet and electricity system, Transportation Research Part A: Policy and Practice, Vol. 94, pp. 514-531, DOI:10.1016/j.tra.2016.10.007

Panos, E., Kannan, R. (2016). The role of domestic biomass in electricity, heat and grid balancing markets in Switzerland, Energy, Vol. 112, pp. 1120-1138, DOI:10.1016/j.energy.2016.06.107

Yazdanie, M., Densing, M., Wokaun, A. (2016). The Role of Decentralized Generation and Storage Technologies in Future Energy Systems Planning for a Rural Agglomeration in Switzerland, Energy Policy, Vol. 96, pp. 432-445, doi: 10.1016/j.enpol.2016.06.010

Densing, M., Panos, E., Hirschberg, S. (2016). Meta-Analysis of Energy Scenario Studies: Example of Electricity Scenarios for Switzerland, Energy, Vol. 109, pp. 998-1015, doi: 10.1016/j.energy.2016.05.020

Pattupara, R. and Kannan, R. (2016). Alternative low-carbon electricity pathways in Switzerland and it’s neighbouring countries under a nuclear phase-out scenario, Applied Energy, Vol. 172, pp. 152-168, DOI:10.1016/j.apenergy.2016.03.084

Kannan, R. and H. Turton (2016). Long term climate change mitigation goals under the nuclear phase out policy: The Swiss energy system transition, Energy Economics, Vol. 55, pp. 211-222, doi:10.1016/j.eneco.2016.02.003

Panos E., Densing M., Volkart K. (2016). Access to electricity in the World Energy Council's global energy scenarios: An outlook for developing regions until 2030, Energy Strategy Reviews, Vol. 9, pp. 28-49, Elsevier doi:10.1016/j.esr.2015.11.003

2015

Panos E., Turton H., Densing M., Volkart K. (2015). Powering the growth of Sub-Saharan Africa: The Jazz and Symphony scenarios of World Energy Council, Energy for Sustainable Development, Vol. 26, pp. 14-33, Elsevier doi:10.1016/j.esd.2015.01.004 ISSN 0973-0826

Kannan, R., H. Turton, E. Panos (2015). Methodological Significance of Temporal Granularity in Energy-Economic Models: Insights from the MARKAL/TIMES Framework, In Giannakidis, G., Labriet, M., Ó Gallachóir, B., Tosato, G (eds.) Informing Energy and Climate Policies Using Energy Systems Models - Insights from Scenario Analysis Increasing the Evidence Base, Vol. 30, pp. 185-200, Springer ISBN 978-3-319-16540-0

Socrates Kypreos , Lehtila Antti (2015). Assessment of Carbon Emissions Quotas with the Integrated TIMES and MERGE Model, In Giannakidis, G., Labriet, M., Ó Gallachóir, B., Tosato, G (eds.) Informing Energy and Climate Policies Using Energy Systems Models - Insights from Scenario Analysis Increasing the Evidence Base, Vol. 30, pp. 111-124, Springer ISBN 978-3-319-16540-0

James Glynn, Patrícia Fortes, Anna Krook-Riekkola, Maryse Labriet, Marc Vielle, Socrates Kypreos, Antti Lehtilä, Peggy Mischke, Hancheng Dai, Maurizio Gargiulo, Per Ivar Helgesen, Tom Kober, Phil Summerton, Bruno Merven, Sadrine Selosen, Kenneth Karlsson, Neil Strachan, and Brian Ó Gallachóir (2015). Economic Impacts of Future Changes in the Energy System – Global Perspectives, In Giannakidis, G., Labriet, M., Ó Gallachóir, B., Tosato, G (eds.) Informing Energy and Climate Policies Using Energy Systems Models - Insights from Scenario Analysis Increasing the Evidence Base, Vol. 30, pp. 333-358, Springer ISBN 978-3-319-16540-0

James Glynn, Patrícia Fortes, Anna Krook-Riekkola, Maryse Labriet, Marc Vielle, Socrates Kypreos, Antti Lehtilä, Peggy Mischke, Hancheng Dai, Maurizio Gargiulo, Per Ivar Helgesen, Tom Kober, Phil Summerton, Bruno Merven, Sadrine Selosen, Kenneth Karlsson, Neil Strachan, and Brian Ó Gallachóir (2015). Economic Impacts of Future Changes in the Energy System – National Perspectives, In Giannakidis, G., Labriet, M., Ó Gallachóir, B., Tosato, G (eds.) Informing Energy and Climate Policies Using Energy Systems Models - Insights from Scenario Analysis Increasing the Evidence Base, Vol. 30, pp. 359-387, Springer ISBN 978-3-319-16540-0

Socrates Kypreos , Lehtila Antti (2015). Decomposing TIAM-MACRO to Assess Climatic Change Mitigation, Environmental Modeling & Assessment, pp. in press, DOI:10.1007/s10666-015-9451-9

2014

Densing, M. (2014). Stochastic programming of time-consistent extensions of AVaR, SIAM Journal on Optimization, Vol. 24(3), pp. 993-1010, DOI:10.1137/130905046, pdf-Version

Yazdanie, M., Noembrini, F., Dossetto, L., Boulouchos, K. (2014). A comparative analysis of well-to-wheel primary energy demand and greenhouse gas emissions for the operation of alternative and conventional vehicles in Switzerland, considering various energy carrier production pathways, Journal of Power Sources, Vol. 249, pp. 333-348, DOI:10.1016/j.jpowsour.2013.10.043, pdf-Version

2013

Marcucci, A. and H. Turton (2013). Induced technological change in moderate and fragmented climate change mitigation regimes, Technological Forecasting and Social Change, in press, DOI:10.1016/j.techfore.2013.10.027, Download post-print copy (0.5MB)

Kriegler, E., K. Riahi, N,. Bauer, V.J. Schwanitz, N. Petermann, V. Bosetti, A. Marcucci, S. Otto, L. Paroussos, S. Rao, T. Arroyo Curras, S. Ashina, J. Bollen, J. Eom, M. Hamdi-Cherif, T. Longden, A. Kitous, A. Méjean, M. Schaeffer, K. Wada, P. Capros, D. van Vuuren, O. Edenhofer (2013). Making or breaking climate targets: The AMPERE study on staged accession scenarios for climate policy, Technological Forecasting and Social Change, revised version

Bauer, N., V. Bosetti, K. Calvin, M. Hamdi-Cherif, A. Kitous, D. McCollum, A. Méjean, S. Rao, H. Turton, L. Paroussos, S. Ashina, K. Wada, D. van Vuuren (2015). CO2 emission mitigation and fossil fuel markets: Dynamic and international aspects of climate policies, Technological Forecasting and Social Change, Vol. Volume 90, Part A, pp. 243–256, in press, DOI: 10.1016/j.techfore.2013.09.009

Riahi, K., E. Kriegler, N. Johnson, C. Bertram, M. den Elzen, J. Eom, M. Schaeffer, J. Edmonds, M. Isaac, V. Krey, T. Longden, G. Luderer, A. Méjean, D. McCollum, S. Mima, H. Turton, D. van Vuuren, K. Wada, V. Bosetti, P. Capros, P. Criqui, M. Hamdi-Cherif, M. Kainuma, O. Edenhofer (2013). Locked into Copenhagen Pledges - Implications of short-term emission targets for the cost and feasibility of long-term climate goals, Technological Forecasting and Social Change, in press, DOI: 10.1016/j.techfore.2013.09.016

Densing, M. (2013). Price-Driven Hydropower Dispatch Under Uncertainty In Kovacevic, R.; Pflug, G. & Vespucci, M. T. (ed.), Chapter 4, Risk Management in Energy Production and Trading, pp. 73-98, DOI: 10.1007/978-1-4614-9035-7_4

Densing, M. (2013). Dispatch Planning using Newsvendor Dual Problems and Occupation Times: Application to Hydropower, European Journal of Operational Research, Vol. 228, pp. 321-330, DOI: 10.1016/j.ejor.2013.01.033

Kannan, R. and H. Turton (2013). A long-term electricity dispatch model with the TIMES framework, Environment Modeling and Assessment, Vol. 18, Issue 3, pp. 325-343, DOI: 10.1007/s10666-012-9346-y

2012

Densing, M., H. Turton and G. Bäuml (2012). Conditions for the successful deployment of electric vehicles - a global energy system perspective, Energy, Vol. 47, pp. 137-149, DOI: 10.1016/j.energy.2012.09.011

Kypreos, Socrates (2012). From the Copenhagen Accord to efficient technology protocolses, Energy Policy, Vol. 44, pp. 341-353, DOI: doi:10.1016/j.enpol.2012.01.063

Densing, M. (2012). Occupation times of the Ornstein–Uhlenbeck process: Functional PCA and evidence from electricity prices, Physica A, Vol. 391 (23), pp. 5818-5826, DOI: 10.1016/j.physa.2012.07.040

Kannan, R. and H. Turton (2012). Cost of ad-hoc nuclear policy uncertainties in the evolution of the Swiss electricity system, Energy Policy, Vol. 50, pp. 391-406, DOI: 10.1016/j.enpol.2012.07.035

Weidmann, N., R. Kannan and H. Turton (2012). Swiss climate change and nuclear policy: a comparative analysis using an energy system approach and a sectoral electricity model, The Swiss Journal of Economics and Statistics, Vol. 148 (2), pp. 275-316, External Link

Marcucci, A. and H. Turton (2012). Swiss Energy Strategies under Global Climate Change and Nuclear Policy Uncertainty, The Swiss Journal of Economics and Statistics, Vol. 148 (2), pp. 317-345, External Link

Sceia, A., J.-C. Altamirano-Cabrera, M. Vielle and N. Weidmann (2012). Assessment of Acceptable Swiss post-2012 Climate Policies, The Swiss Journal of Economics and Statistics, Vol. 148 (2), pp. 347-380, External Link

André Sceia, Juan-Carlos Altamirano-Cabrera, Laurent Drouet, Thorsten F. Schulz, Marc Vielle (2012). Integrated Assessment of Swiss GHG Mitigation Policies After 2012: Coupling the Residential Sector, Environmental Modeling & Assessment, Vol. 17 (3), pp 193–207

2011

Densing, M. and H. Turton (2011). Contribution to the World Energy Council, Global Transport Scenarios 2050, Project Partners: IBM Corporation and Paul Scherrer Institute, ISBN 978-0-946121-14-4/978-0-946121-13-7

Gül, T. and H. Turton (2011). Long-term Scenarios of the Global Energy and Transport System In Wilhelm, E., Wokaun, A. (eds.), Transition to Hydrogen: Pathways to Clean Transportation, Cambridge University Press, ISBN 978-0-52119-288-0

Kypreos, S. and H. Turton (2011). Climate Change Scenarios and Technology Transfer Protocols, Energy Policy, Vol. 39(2), pp. 844-853, DOI: 10.1016/j.enpol.2010.11.003

Mark Howells, Holger Rogner, Neil Strachan, Charles Heaps, Hillard Huntington ,Socrates Kypreos, Alison Hughes, Semida Silveira, Joe DeCarolis, Morgan Bazillian, and Alexander Roehrl (2011). OSeMOSYS: The Open Source Energy Modeling System: An introduction to its ethos, structure and development, Energy Policy, Vol. 42, pp. 5850–5870, doi:10.1016/j.enpol.2011.06.033

2010

Skea, J., M. Chaudry, P. Ekins, R. Kannan, A. Shakoor, X. Wang (2010). A resilient energy system, In Skea, J., Ekins, P., Winskel, M. (eds.), Energy 2050: Making the Transition to a Secure Low Carbon Energy System, Earthscan, ISBN 9781849710848

Edenhofer, O., B. Knopf, T. Barker, L. Baumstark, E. Bellevrat, B. Chateau, P. Criqui, M. Isaac, A. Kitous, S. Kypreos, M. Leimbach, K. Lessmann, B. Magne, S. Scrieciu, H. Turton and D. van Vuuren (2010). The Economics of Low Stabilization: Model Comparison of Mitigation Strategies and Costs, Energy Journal, Vol. 31 (Special Issue 1 on The Economics of Low Stabilization), pp. 11-48, DOI: 10.5547/ISSN0195-6574-EJ-Vol31-NoSI-2

Magne, B., S. Kypreos and H. Turton (2010). Technology options for low stabilisation with MERGE, Energy Journal, Vol. 31 (Special Issue 1 on The Economics of Low Stabilization), pp. 83-107, DOI: 10.5547/ISSN0195-6574-EJ-Vol31-NoSI-4

2009

Eskeland, G., P. Criqui, E. Jochem, H. Neufeldt, G. Catenazzi, W. Eichhammer, A. Held, M. Jakob, K. Linnerud, T. Mideksa, S. Mima, T. Traber, W. Schade, U. Reiter, N. Rive and H. Turton (2009). Transforming the European energy system In Hulme, M., Neufeldt, H. (eds.), Making Climate Change Work for Us: European Perspectives on Adaptation and Mitigation Strategies, Cambridge University Press

Gül T., S. Kypreos, H. Turton and L. Barreto (2009). An Energy-Economics Scenario Analysis of Alternative Fuels for Transport Using the Global Multi-regional MARKAL Model GMM, Energy, Vol. 34(10), pp. 1423-1437, DOI: 10.1016/j.energy.2009.04.010

Knopf, B., O. Edenhofer, T. Barker, L. Baumstark, P. Criqui, A. Held, M. Isaac, M. Jakob, E. Jochem, A. Kitous, S. Kypreos, M. Leimbach, B. Magné, S. Mima, W. Schade, S. Scrieciu, H. Turton and D. van Vuuren (2009). The economics of low stabilisation: implications for technological change and policy In Hulme, M., Neufeldt, H. (eds.), Making Climate Change Work for Us: European Perspectives on Adaptation and Mitigation Strategies, Cambridge University Press

2008

Barreto, L. and R. Kemp (2008). Inclusion of Technology Diffusion in Energy-system Models: Some Gaps and Needs, Journal of Cleaner Production (Special Issue on Cleaner Technologies Diffusion: Modelling, Case Studies and Policy), Vol. 1 (Sup.1), pp. 95-101, DOI: 10.1016/j.jclepro.2007.10.008

Bauer, N., and O. Edenhofer and S. Kypreos (2008). Linking Energy System and Macroeconomic Growth Models, Journal of Computational Management Science (Special Issue on Managing Energy and the Environment), Vol. 5(1-2), pp. 95-117, DOI: 10.1007/s10287-007-0042-3

Krzyzanowski, D., S. Kypreos and L. Barreto (2008). Supporting hydrogen based transportation: case studies with Global MARKAL Model, Journal of Computational Management Science, Vol. 5(3), pp. 207-231, DOI: 10.1007/s10287-007-0040-5

Kypreos, S. (2008). Stabilizing Global Temperature Change Below Thresholds; Monte Carlo Analyses with MERGE, Journal of Computational Management Science (Special Issue on Managing Energy and the Environment), Vol. 5(1-2), pp. 141-170, DOI: 10.1007/s10287-007-0049-9

Kypreos, S., M. Blesel, C. Cosmi, A. Kanudia, R. Loulou, K. Smekens, M. Salvia, D. van Regemorter and V. Cuomo (2008). Times-EU: A Pan-european Model Integrating Lca And External Costs, International Journal of Sustainable Development and Planning, Vol. 3(2), pp. 180-194, DOI: 10.2495/SDP-V3-N2-180-194

Lafforgue, G., B. Magné and M. Moreaux (2008). Energy substitutions, climate change and carbon sinks, Ecological Economics, Vol. 67(4), pp. 589-597, DOI: 10.1016/j.ecolecon.2008.01.008

Lafforgue, G., B. Magné and M. Moreaux (2008). The optimal sequestration policy with a ceiling on the stock of carbon in the atmosphere. In Roger Guesnerie and Henry Tulkens (eds.), The Design of Climate Policy, papers from a Summer Institute held in Venice, CESifo Seminar Series, Boston: The MIT Press

Rafaj, P. and S. Kypreos (2008). The role of nuclear energy in the post-Kyoto carbon mitigation strategies, International Journal of Nuclear Governance, Economy and Ecology, Vol. 2(1), pp. 10-27, DOI: 10.1504/IJNGEE.2008.017353

Schulz, T., S. Kypreos, L. Barreto and A. Wokaun (2008). Intermediate Steps Towards a 2000 Watt Society in Switzerland: An Energy-Economic Scenario Analysis, Energy Policy, Vol. 36(4), pp. 1303-1317, DOI: 10.1016/j.enpol.2007.12.006

Turton, H. (2008). ECLIPSE: an integrated energy-economy model for climate policy and scenario analysis, Energy, Vol. 33(12), pp. 1754-1769, DOI: 10.1016/j.energy.2008.07.008

Turton, H. and F. Moura (2008). Vehicle-to-grid systems for sustainable development: an integrated energy analysis, Technological Forecasting and Social Change, Vol. 75(8), pp. 1091-1108, DOI: 10.1016/j.techfore.2007.11.013

2007

Barreto, L. and H. Turton (2007). Impact Assessment of Energy-related Policy Instruments on Climate Change and Security of Energy Supply, International Journal of Global Energy Issues, Vol. 27(1), pp. 15-41, DOI: 10.1504/IJGEI.2007.012116

Kypreos, S. (2007). A MERGE Model with Endogenous Technological Change and the Cost of Carbon Stabilization, Energy Policy (Special Issue in honor of Alan Manne), Vol. 35(11), pp. 5327-5336, DOI: 10.1016/j.enpol.2006.01.029

Rafaj, P. and S. Kypreos (2007). Internalization of External Cost in the Power Generation Sector: Analysis with Global Multi-regional MARKAL Model, Energy Policy, Vol. 35(2), pp. 828-843, DOI: 10.1016/j.enpol.2006.03.003

Ryan, L and H. Turton (2007). , Sustainable automobile transport: shaping climate change policy, Edward Elgar, ISBN 978-1-84720-451-6

Schulz, T., L. Barreto, S. Kypreos, S. Stucki (2007). Assessing wood-based synthetic natural gas technologies using the SWISS-MARKAL model, Energy, Vol. 32(10), pp. 1948-1959, DOI: 10.1016/j.energy.2007.03.006

Spielmann, M. and H.J. Althaus (2007). Can a prolonged car use of a passenger car reduce environmental burdens? Life cycle analysis of Swiss passenger cars, Journal of Cleaner Production, Vol. 15(11-12), pp. 1122-1134, DOI: 10.1016/j.jclepro.2006.07.022

Turton, H. and L. Barreto (2007). Automobile Technology, Hydrogen and Climate Change: A Long-term Modeling Analysis, International Journal of Alternative Propulsion, Vol. 1(4), pp. 397-426, DOI: 10.1504/IJAP.2007.013332

Uddin, S.N. and L. Barreto (2007). Biomass-fired Cogeneration Systems with CO2 Capture and Storage, Renewable Energy, Vol. 32, pp. 1006-1019, DOI: 10.1016/j.renene.2006.04.009

Wokaun, A., B. Aebischer, C. Appenzeller, J-F. Dupont, T. Gül, L. Gutzwiller, P. Heck, R. Hohmann, C. Rutschmann and N. Zepf (2007). Energie. In Hohmann, R., Thalmann, E., Müller-Ferch, G., Neu, U., Ritz, C. and Kull, C. (Editors), Klimaänderung und die Schweiz 2050: Erwartete Auswirkungen auf Umwelt, Gesellschaft und Wirtschaft, OcCC/Proclim, ISBN 978-3-907630-26-6

2006

Bahn, O., L. Drouet, N. Edwards, A. Haurie, S. Kypreos, T. Stocker and J.P. Vial (2006). The Coupling of Optimal Economic and Climate Dynamics, Climatic Change (Special Issue of the Swiss NCCR-Climate Project), Vol. 79, pp. 103-119, DOI: 10.1007/978-1-4020-5714-4_6

Bürgenmeier, B., A. Baranzini, C. Ferrier, C. Germond-Duret, K. Ingold, S. Perret, P. Rafaj, S. Kypreos, A. Wokaun (2006). Economics of Climate Policy and collective Decision Making, Climatic Change (Special Issue of the Swiss NCCR-Climate Project), Vol. 79, pp. 143-162, DOI: 10.1007/s10584-006-9147-x

Gül, T. and T. Stenzel (2006). Intermittency of Wind: The wider Picture, International Journal of Global Energy Issues, Vol. 25(3/4), pp. 163-186

Rafaj, P., L. Barreto and S. Kypreos (2006). Combining Policy Instruments for Sustainable Energy Systems: An Analysis with the GMM Model, Environmental Modelling and Assessment, Vol. 11(4), pp. 227-295, DOI: 10.1007/s10666-005-9037-z

Turton, H. and L. Barreto (2006). Long-term Security of Energy Supply and Climate Change: A Bottom-Up Modelling Analysis, Energy Policy, Vol. 34(15), pp. 2232-2250, DOI: 10.1016/j.enpol.2005.03.016

Viguier, L., L. Barreto, A. Haurie, S. Kypreos and P. Rafaj (2006). Modelling Endogenous Learning and imperfect Competition Effects in Climate Change Economics, Climatic Change (Special Issue of the Swiss NCCR-Climate Project), Vol. 79, pp. 121-141, DOI: 10.1007/978-1-4020-5714-4_7

2005

Kypreos S. (2005). Modeling experience curves in MERGE (model for evaluating regional and global effects), Energy, Vol. 30(14), pp. 2721-2737, DOI: 10.1016/j.energy.2004.07.006

Rafaj, P., S. Kypreos and L. Barreto (2005). Flexible Carbon Mitigation Policies: Analysis with a Global Multi-regional MARKAL Model. In Haurie, A., Viguier, L., (Editors), Coupling Climate and Economic Dynamics, Kluwer Academic Publishers. Dordrecht, the Netherlands. ISBN 1-4020-3424-5

2004

Edenhofer, O., N. Bauer and E. Kriegler (2004). The impact of technological change on climate protection and welfare: Insights from the model MIND, Ecological Economics, Vol. 54(2-3), pp. 277–292, DOI: 10.1016/j.ecolecon.2004.12.030

Edenhofer, O., H.-J. Schellnhuber and N. Bauer (2004). Risks and Opportunities of Planet Protection, Internationale Politik - Transatlantic Edition, Vol. 5(4), pp. 61-78

Edenhofer, O., H.-J. Schellnhuber and N. Bauer (2004). Der Lohn des Mutes, Internationale Politik, Vol. 59(8), pp. 28-39

Riahi, K., L. Barreto, S. Rao and E. Rubin (2004). Towards Fossil-based Electricity Systems with Integrated CO2 Capture: Implications of an Illustrative Long-term Technology Policy. In: E.S. Rubin, D.W. Keith and C.F. Gilboy (Editors), Proceedings of the 7th International Conference on Greenhouse Gas Control Technologies, Vol. 1: Peer-Reviewed Papers and Plenary Presentations, IEA Greenhouse Gas Programme, Cheltenham, UK, 2004

Barreto, L. and S. Kypreos (2004). Emissions Trading and Technology Deployment in an Energy-Systems "Bottom-Up" Model with Technology Learning, European Journal of Operational Research, Vol. 158(1), pp. 243-261, DOI: 10.1016/S0377-2217(03)00350-3

Barreto, L. and S. Kypreos (2004). Endogenizing R&D and Market Experience in the "Bottom-Up" Energy-Systems ERIS Model, Technovation, Vol. 24(8), pp. 615-629, DOI: 10.1016/S0166-4972(02)00124-4

Manne, A. and L. Barreto (2004). Learn-by-doing and carbon dioxide abatement, Energy Economics, Vol. 26(4), pp. 621-633, DOI:10.1016/j.eneco.2004.04.023

Kypreos, S. and R. Krakowski (2004). Introducing Externalities in the Power Generation Sector of China, International Journal of Global Energy Issues, Vol. 22(2/3/4), pp. 131-154

Rits, V., S. Kypreos and A. Wokaun (2004). Evaluating the Diffusion of Fuel-Cell Cars in the China Markets, Journal of International Association of Traffic and Safety (IATSS Research), Vol. 28(1), pp. 34-46

2003

Röder, A., S. Kypreos and A. Wokaun (2003). Evaluating technologies in automobile markets, International Journal of Sustainable Development, Vol. 6(4), pp. 417-435, Full Text

Kypreos, S., R. Krakowski, A. Röder, Z. Wei1, and W. Chen (2003). Energy Economy Modeling Scenarios for China and Shandong. In: Eliasson, B and Lee, Y. Y. (Editors), Integrated Assessment of Sustainable Energy Systems in China, The China Energy Technology Program, pp. 99-199, Kluwer Academic Publishers

Bahn, O. and S. Kypreos (2003). Incorporating different endogenous learning formulations in MERGE, International Journal of Global Energy Issues, Vol. 19(4), pp. 333-358, External Link

Kypreos, S. and O. Bahn (2003). A MERGE model with endogenous technological progress, Environmental Modeling and Assessment, Vol. 8(3), pp. 249-259, DOI: 10.1023/A:1025551408939

Sager, J. (2003). An analysis with the CERT Model of the FSU Market Power in the Carbon Emissions Trading Market, Environmental Modeling and Assessment, Vol. 8(3), pp. 219-238, DOI: 10.1023/A:1025547308030

2002

Bahn, O. (2002). Swiss policy options to curb CO2 emissions: Insights from GEM-E3 Switzerland in Decision and Control in Management Science, Georges Zaccour (Editor), Essays in Honor of Alain Haurie, Kluwer Academic Publishers

Barreto, L. and S. Kypreos. (2002). Multi-Regional Technological Learning in the Energy-Systems MARKAL Model, International Journal of Global Energy Issues, Vol. 17(3), pp. 189-213

2001

Bahn, O., L. Barreto, and S. Kypreos (2001). Modelling and assessing inter-regional trade of CO2 emission reduction units, Environmental Modeling and Assessment, Vol. 6(3), pp. 173-182, DOI: 10.1023/A:1011914015053

Bahn, O., S. Kypreos and S. Hirschberg (2001). Flexible Mechanismen für den Klimaschutz, BWK - Das Energie-Fachmagazin, Vol. 9, pp. 63-65

Scherer G.G. and A. Röder (2001). Auswirkungen der Brennstoffzellen-Technologie auf die Entwicklung alternativer Antriebe im Automobilbereich, Automobiltechnische Zeitschrift (ATZ), Vol. 103, pp. 274-281

2000

Barreto, L. and S. Kypreos (2000). A Post-Kyoto analysis with the ERIS model prototype, International Journal of Global Energy Issues, Vol. 14, pp. 262-280, External Link

Kypreos, S., L. Barreto, P. Capros and S. Messner (2000). ERIS: A model prototype with endogenous technological change, International Journal of Global Energy Issues, Vol. 14, pp. 374-397, External Link

Kram, T., A.J. Seebregts, G.J. Schaeffer, L. Barreto, S. Kypreos, S. Messner and L. Schrattenholzer (2000). Technology dynamics in energy systems models with perfect foresight, International Journal of Global Energy Issues, Vol. 14, pp. 48-64, External Link

1999

Bahn, O., A. Cadena and S. Kypreos (1999). Joint Implementation of CO2 emission reduction measures between Switzerland and Colombia, International Journal of Environment and Pollution, Vol. 12(2/3), pp. 308-322

Bahn, O., S. Kypreos, B. Büeler and H.-J. Lüthi (1999). Modelling an international market of CO2 emission permits, International Journal of Global Energy Issues, Vol. 12, pp. 283-291, External Link

Kypreos, S. (1999). Assessment of CO2 reduction policies for Switzerland, International Journal of Global Energy Issues, Vol. 12, pp. 233-243

1998

Bahn, O., E. Fragnière, and S. Kypreos (1998). Swiss energy taxation options to curb CO2 emissions, European Environment, Vol. 8(3), pp. 94-101, DOI: 10.1002/(SICI)1099-0976(199805/06)8:3<94::AID-EET154>3.0.CO;2-Y

Bahn, O., A. Haurie, S. Kypreos, S. and J.-P. Vial (1998). Advanced mathematical programming modeling to assess the benefits from international CO2 abatement cooperation, Environmental Modeling and Assessment, Vol. 3(1-2), pp. 107-115, DOI: 10.1023/A:1019062806256
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    Saisonale Gasspeicher in der Schweiz
    Aqua & Gas. 2024; 104(5): 34-39.
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    Accelerating the performance of large-scale TIMES models in the modelling of sustainable development goals
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    The role of digital social practices and technologies in the Swiss energy transition towards net-zero carbon dioxide emissions in 2050
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    How, where, and when to charge electric vehicles - net-zero energy system implications and policy recommendations
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    A multi-model framework to assess the role of R&D towards a decarbonized energy system
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    Deep decarbonisation pathways of the energy system in times of unprecedented uncertainty in the energy sector
    Energy Policy. 2023; 180: 113642 (18 pp.). https://doi.org/10.1016/j.enpol.2023.113642
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    "Quantifying the implications of behavioral changes induced by digitalization on energy transition: a systematic review of methodological approaches"
    Energy Research and Social Science. 2023; 97: 102961 (19 pp.). https://doi.org/10.1016/j.erss.2023.102961
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    Impacts of digitalization and societal changes on energy transition: a novel socio-techno-economic energy system model
    Energy Strategy Reviews. 2023; 50: 101224 (18 pp.). https://doi.org/10.1016/j.esr.2023.101224
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    Conditions for profitable operation of P2X energy hubs to meet local demand under to with energy market access
    Advances in Applied Energy. 2023; 10: 100127 (16 pp.). https://doi.org/10.1016/j.adapen.2023.100127
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    Low-dimensional scenario generation method of solar and wind availability for representative days in energy modeling
    Applied Energy. 2022; 306(B): 118075 (17 pp.). https://doi.org/10.1016/j.apenergy.2021.118075
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    A net‐zero Swiss energy system by 2050: technological and policy options for the transition of the transportation sector
    Futures & Foresight Science. 2022; 4(3-4): e126 (22 pp.). https://doi.org/10.1002/ffo2.126
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    Behavior matters: a systematic review of representing consumer mobility choices in energy models
    Energy Research and Social Science. 2022; 90: 102596 (23 pp.). https://doi.org/10.1016/j.erss.2022.102596
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  • Obrist MD, Kannan R, Schmidt TJ, Kober T
    Long-term energy efficiency and decarbonization trajectories for the Swiss pulp and paper industry
    Sustainable Energy Technologies and Assessments. 2022; 52: 101937 (14 pp.). https://doi.org/10.1016/j.seta.2021.101937
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  • Reigstad GA, Roussanaly S, Straus J, Anantharaman R, de Kler R, Akhurst M, et al.
    Moving toward the low-carbon hydrogen economy: experiences and key learnings from national case studies
    Advances in Applied Energy. 2022; 8: 100108 (14 pp.). https://doi.org/10.1016/j.adapen.2022.100108
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  • Rüdisüli M, Bach C, Bauer C, Beloin-Saint-Pierre D, Elber U, Georges G, et al.
    Prospective life-cycle assessment of greenhouse gas emissions of electricity-based mobility options
    Applied Energy. 2022; 306(Part B): 118065 (20 pp.). https://doi.org/10.1016/j.apenergy.2021.118065
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    Journal of Cleaner Production. 2021; 288: 125413 (13 pp.). https://doi.org/10.1016/j.jclepro.2020.125413
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  • Schneider SF, Novák P, Kober T
    Rechargeable batteries for simultaneous demand peak shaving and price arbitrage business
    IEEE Transactions on Sustainable Energy. 2021; 12(1): 148-157. https://doi.org/10.1109/TSTE.2020.2988205
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  • Streicher KN, Berger M, Panos E, Narula K, Soini MC, Patel MK
    Optimal building retrofit pathways considering stock dynamics and climate change impacts
    Energy Policy. 2021; 152: 112220 (13 pp.). https://doi.org/10.1016/j.enpol.2021.112220
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    The value of flexible selling: power production with storage for spinning reserve provision
    European Journal of Operational Research. 2020; 281(1): 141-151. https://doi.org/10.1016/j.ejor.2019.08.012
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    Energy Economics. 2020; 90: 104802 (21 pp.). https://doi.org/10.1016/j.eneco.2020.104802
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    Global energy perspectives to 2060 - WEC's World Energy Scenarios 2019
    Energy Strategy Reviews. 2020; 31: 100523 (19 pp.). https://doi.org/10.1016/j.esr.2020.100523
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    Long-term development of the industrial sector - case study about electrification, fuel switching, and CCS in the USA
    Computers and Chemical Engineering. 2020; 133: 106602 (14 pp.). https://doi.org/10.1016/j.compchemeng.2019.106602
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    Proceedings of the IEEE. 2020; 108(9): 1437-1456. https://doi.org/10.1109/JPROC.2020.2992251
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    Energy system pathways with low environmental impacts and limited costs: minimizing climate change impacts produces environmental cobenefits and challenges in toxicity and metal depletion categories
    Environmental Science and Technology. 2020; 54(8): 5081-5092. https://doi.org/10.1021/acs.est.9b06484
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    Energy Policy. 2019; 128: 179-188. https://doi.org/10.1016/j.enpol.2018.12.057
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  • Hassan A, Patel MK, Parra D
    An assessment of the impacts of renewable and conventional electricity supply on the cost and value of power-to-gas
    International Journal of Hydrogen Energy. 2019; 44(19): 9577-9593. https://doi.org/10.1016/j.ijhydene.2018.10.026
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  • Landis F, Marcucci A, Rausch S, Kannan R, Bretschger L
    Multi-model comparison of Swiss decarbonization scenarios
    Swiss Journal of Economics and Statistics. 2019; 155: 12 (18 pp.). https://doi.org/10.1186/s41937-019-0040-8
    DORA PSI
  • Marcucci A, Panos E, Kypreos S, Fragkos P
    Probabilistic assessment of realizing the 1.5 °C climate target
    Applied Energy. 2019; 239: 239-251. https://doi.org/10.1016/j.apenergy.2019.01.190
    DORA PSI
  • Panos E, Kober T, Wokaun A
    Long term evaluation of electric storage technologies vs alternative flexibility options for the Swiss energy system
    Applied Energy. 2019; 252: 113470 (14 pp.). https://doi.org/10.1016/j.apenergy.2019.113470
    DORA PSI
  • Panos E, Margelou S
    Long-term solar photovoltaics penetration in single- and two-family houses in Switzerland
    Energies. 2019; 12(13): 2460 (33 pp.). https://doi.org/10.3390/en12132460
    DORA PSI
  • Panos E, Densing M
    The future developments of the electricity prices in view of the implementation of the Paris Agreements: will the current trends prevail, or a reversal is ahead?
    Energy Economics. 2019; 84: 104476 (17 pp.). https://doi.org/10.1016/j.eneco.2019.104476
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  • Ruiz P, Nijs W, Tarvydas D, Sgobbi A, Zucker A, Pilli R, et al.
    ENSPRESO - an open, EU-28 wide, transparent and coherent database of wind, solar and biomass energy potentials
    Energy Strategy Reviews. 2019; 26: 100379 (12 pp.). https://doi.org/10.1016/j.esr.2019.100379
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  • Sharma T, Glynn J, Panos E, Deane P, Gargiulo M, Rogan F, et al.
    High performance computing for energy system optimization models: enhancing the energy policy tool kit
    Energy Policy. 2019; 128: 66-74. https://doi.org/10.1016/j.enpol.2018.12.055
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  • Shivakumar A, Dobbins A, Fahl U, Singh A
    Drivers of renewable energy deployment in the EU: an analysis of past trends and projections
    Energy Strategy Reviews. 2019; 26: 100402 (35 pp.). https://doi.org/10.1016/j.esr.2019.100402
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  • van der Zwaan B, Halstead M, Kober T
    Water stress implications of energy scenarios for the Middle East: an assessment of risks and uncertainties
    In: Doukas H, Flamos A, Lieu J, eds. Understanding risks and uncertainties in energy and climate policy. Multidisciplinary methods and tools for a low carbon society. Cham: Springer; 2019:143-160. https://doi.org/10.1007/978-3-030-03152-7_6
    DORA PSI
  • Bjørndal E, Bjørndal M, Cai H, Panos E
    Hybrid pricing in a coupled European power market with more wind power
    European Journal of Operational Research. 2018; 264(3): 919-931. https://doi.org/10.1016/j.ejor.2017.06.048
    DORA PSI
  • Dalla Longa F, Strikkers T, Kober T, van der Zwaan B
    Advancing energy access modelling with Geographic Information System data
    Environmental Modeling and Assessment. 2018; 23(6): 627-637. https://doi.org/10.1007/s10666-018-9627-1
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  • Frischknecht R, Bauer C, Bucher C, Ager-Wick Ellingsen L, Gutzwiller L, Heimbach B, et al.
    LCA of key technologies for future electricity supply - 68th LCA forum, Swiss Federal Institute of Technology, Zurich, 16 April, 2018
    International Journal of Life Cycle Assessment. 2018; 23(8): 1716-1721. https://doi.org/10.1007/s11367-018-1496-y
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  • Kannan R
    Dynamics of long-term electricity demand profile: insights from the analysis of Swiss energy systems
    Energy Strategy Reviews. 2018; 22: 410-425. https://doi.org/10.1016/j.esr.2018.10.010
    DORA PSI
  • Kober T, Panos E, Volkart K
    Energy system challenges of deep global CO2 emissions reduction under the World Energy Council’s scenario framework
    In: Giannakidis G, Karlsson K, Labriet M, Ó Gallachóir B, eds. Limiting global warming to well below 2 °C: energy system modelling and policy development. Lecture notes in energy. Cham: Springer; 2018:17-31. https://doi.org/10.1007/978-3-319-74424-7_2
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  • Kypreos S, Glynn J, Panos E, Giannakidis G, Ó Gallachóir B
    Efficient and equitable climate change policies
    Systems. 2018; 6(2): 10 (18 pp.). https://doi.org/10.3390/systems6020010
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  • Lucena AFP, Hejazi M, Vasquez-Arroyo E, Turner S, Köberle AC, Daenzer K, et al.
    Interactions between climate change mitigation and adaptation: the case of hydropower in Brazil
    Energy. 2018; 164: 1161-1177. https://doi.org/10.1016/j.energy.2018.09.005
    DORA PSI
  • Panos E, Kannan R
    Challenges and opportunities for the Swiss energy system in meeting stringent climate mitigation targets
    In: Giannakidis G, Karlsson K, Labriet M, Ó Gallachóir B, eds. Limiting global warming to well below 2 °C: energy system modelling and policy development. Lecture notes in energy. Cham: Springer; 2018:155-172. https://doi.org/10.1007/978-3-319-74424-7_10
    DORA PSI
  • Schiffer H-W, Kober T, Panos E
    World Energy Council’s global energy scenarios to 2060
    Zeitschrift für Energiewirtschaft. 2018; 42(2): 91-102. https://doi.org/10.1007/s12398-018-0225-3
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  • Shivakumar A, Pye S, Anjo J, Miller M, Rouelle PB, Densing M, et al.
    Smart energy solutions in the EU: state of play and measuring progress
    Energy Strategy Reviews. 2018; 20: 133-149. https://doi.org/10.1016/j.esr.2018.02.005
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  • Volkart K, Mutel CL, Panos E
    Integrating life cycle assessment and energy system modelling: methodology and application to the world energy scenarios
    Sustainable Production and Consumption. 2018; 16: 121-133. https://doi.org/10.1016/j.spc.2018.07.001
    DORA PSI
  • Yazdanie M, Densing M, Wokaun A
    The nationwide characterization and modeling of local energy systems: quantifying the role of decentralized generation and energy resources in future communities
    Energy Policy. 2018; 118: 516-533. https://doi.org/10.1016/j.enpol.2018.02.045
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  • van der Zwaan B, Kober T, Dalla Longa F, van der Laan A, Kramer GJ
    An integrated assessment of pathways for low-carbon development in Africa
    Energy Policy. 2018; 117: 387-395. https://doi.org/10.1016/j.enpol.2018.03.017
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  • Arias-Gaviria J, van der Zwaan B, Kober T, Arango-Aramburo S
    The prospects for small hydropower in Colombia
    Renewable Energy. 2017; 107: 204-214. https://doi.org/10.1016/j.renene.2017.01.054
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  • Collins S, Deane JP, Poncelet K, Panos E, Pietzcker RC, Delarue E, et al.
    Integrating short term variations of the power system into integrated energy system models: a methodological review
    Renewable and Sustainable Energy Reviews. 2017; 76: 839-856. https://doi.org/10.1016/j.rser.2017.03.090
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  • Marcucci A, Kypreos S, Panos E
    The road to achieving the long-term Paris targets: energy transition and the role of direct air capture
    Climatic Change. 2017; 144(2): 181-193. https://doi.org/10.1007/s10584-017-2051-8
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  • Volkart K, Weidmann N, Bauer C, Hirschberg S
    Multi-criteria decision analysis of energy system transformation pathways: a case study for Switzerland
    Energy Policy. 2017; 106: 155-168. https://doi.org/10.1016/j.enpol.2017.03.026
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  • Volkart K, Densing M, De Miglio R, Priem T, Pye S, Cox B
    The role of fuel cells and hydrogen in stationary applications
    In: Welsch M, Pye S, Keles D, Faure-Schuyer A, Dobbins A, Shivakumar A, et al., eds. Europe's energy transition - insights for policy making. Findings informing the European Commission. London: Elsevier; 2017:189-205. https://doi.org/10.1016/B978-0-12-809806-6.00023-7
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  • Yazdanie M, Densing M, Wokaun A
    Cost optimal urban energy systems planning in the context of national energy policies: a case study for the city of Basel
    Energy Policy. 2017; 110: 176-190. https://doi.org/10.1016/j.enpol.2017.08.009
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  • Zhang X, Bauer C, Mutel CL, Volkart K
    Life cycle assessment of power-to-gas: approaches, system variations and their environmental implications
    Applied Energy. 2017; 190: 326-338. https://doi.org/10.1016/j.apenergy.2016.12.098
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  • Björnsen Gurung A, Borsdorf A, Füreder L, Kienast F, Matt P, Scheidegger C, et al.
    Rethinking pumped storage hydropower in the European Alps
    Mountain Research and Development. 2016; 36(2): 222-232. https://doi.org/10.1659/MRD-JOURNAL-D-15-00069.1
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  • Densing M, Panos E, Hirschberg S
    Meta-analysis of energy scenario studies: example of electricity scenarios for Switzerland
    Energy. 2016; 109: 998-1015. https://doi.org/10.1016/j.energy.2016.05.020
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  • Jewell J, Vinichenko V, McCollum D, Bauer N, Riahi K, Aboumahboub T, et al.
    Comparison and interactions between the long-term pursuit of energy independence and climate policies
    Nature Energy. 2016; 1(6): 16073 (9 pp.). https://doi.org/10.1038/nenergy.2016.73
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  • Kannan R, Hirschberg S
    Interplay between electricity and transport sectors – integrating the Swiss car fleet and electricity systemi
    Transportation Research Part A: Policy and Practice. 2016; 94: 514-531. https://doi.org/10.1016/j.tra.2016.10.007
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  • Kannan R, Turton H
    Long term climate change mitigation goals under the nuclear phase out policy: the Swiss energy system transition
    Energy Economics. 2016; 55: 211-222. https://doi.org/10.1016/j.eneco.2016.02.003
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  • Kypreos S, Lehtilä A
    From Copenhagen to Durban and the challenge for sustainable levels of GHG concentrations
    International Journal of Global Energy Issues. 2016; 39(5): 323-339. https://doi.org/10.1504/IJGEI.2016.078702
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  • Panos E, Densing M, Volkart K
    Access to electricity in the World Energy Council's global energy scenarios: an outlook for developing regions until 2030
    Energy Strategy Reviews. 2016; 9: 28-49. https://doi.org/10.1016/j.esr.2015.11.003
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  • Panos E, Kannan R
    The role of domestic biomass in electricity, heat and grid balancing markets in Switzerland
    Energy. 2016; 112: 1120-1138. https://doi.org/10.1016/j.energy.2016.06.107
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  • Pattupara R, Kannan R
    Alternative low-carbon electricity pathways in Switzerland and it's neighbouring countries under a nuclear phase-out scenario
    Applied Energy. 2016; 172: 152-168. https://doi.org/10.1016/j.apenergy.2016.03.084
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    Evidence for monoclinic distortion in the ground state phase of underdoped La1.95Sr0.05CuO4: a single crystal neutron diffraction study
    Journal of Applied Physics. 2016; 119(12): 123902 (8 pp.). https://doi.org/10.1063/1.4944797
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  • Volkart K, Bauer C, Burgherr P, Hirschberg S, Schenler W, Spada M
    Interdisciplinary assessment of renewable, nuclear and fossil power generation with and without carbon capture and storage in view of the new Swiss energy policy
    International Journal of Greenhouse Gas Control. 2016; 54(1): 1-14. https://doi.org/10.1016/j.ijggc.2016.08.023
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  • Yazdanie M, Densing M, Wokaun A
    The role of decentralized generation and storage technologies in future energy systems planning for a rural agglomeration in Switzerland
    Energy Policy. 2016; 96: 432-445. https://doi.org/10.1016/j.enpol.2016.06.010
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    CO2 emission mitigation and fossil fuel markets: dynamic and international aspects of climate policies
    Technological Forecasting and Social Change. 2015; 90(Part A): 243-256. https://doi.org/10.1016/j.techfore.2013.09.009
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    Economic impacts of future changes in the energy system - global perspectives
    In: Giannakidis G, Labriet M, Gallachóir BÓ, Tosato GC, eds. Informing energy and climate policies using energy systems models. Insights from scenario analysis increasing the evidence base. Lecture notes in energy. Cham: Springer; 2015:333-358. https://doi.org/10.1007/978-3-319-16540-0_19
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    Economic impacts of future changes in the energy system - national perspectives
    In: Giannakidis G, Labriet M, Gallachóir BÓ, Tosato GC, eds. Informing energy and climate policies using energy systems models. Insights from scenario analysis increasing the evidence base. Lecture notes in energy. Cham: Springer; 2015:359-387. https://doi.org/10.1007/978-3-319-16540-0_20
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  • Kannan R, Turton H, Panos E
    Methodological significance of temporal granularity in energy-economic models - insights from the MARKAL/TIMES framework
    In: Giannakidis G, Labriet M, Gallachóir BÓ, Tosato GC, eds. Informing energy and climate policies using energy systems models. Insights from scenario analysis increasing the evidence base. Lecture notes in energy. Cham: Springer; 2015:185-200. https://doi.org/10.1007/978-3-319-16540-0_11
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    A short note on integrated assessment modeling approaches: rejoinder to the review of "making or breaking climate targets - the AMPERE study on staged accession scenarios for climate policy"
    Technological Forecasting and Social Change. 2015; 99: 273-276. https://doi.org/10.1016/j.techfore.2015.07.011
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    Diagnostic indicators for integrated assessment models of climate policy
    Technological Forecasting and Social Change. 2015; 90: 45-61. https://doi.org/10.1016/j.techfore.2013.09.020
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    Making or breaking climate targets: the AMPERE study on staged accession scenarios for climate policy
    Technological Forecasting and Social Change. 2015; 90(A): 24-44. https://doi.org/10.1016/j.techfore.2013.09.021
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    Assessment of carbon emissions quotas with the integrated TIMES and MERGE model
    In: Giannakidis G, Labriet M, Gallachóir BÓ, Tosato GC, eds. Informing energy and climate policies using energy systems models. Insights from scenario analysis increasing the evidence base. Lecture notes in energy. Cham: Springer; 2015:111-124.
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  • Kypreos S, Lehtila A
    Decomposing TIAM-MACRO to assess climatic change mitigation
    Environmental Modeling and Assessment. 2015; 20(6): 571-581. https://doi.org/10.1007/s10666-015-9451-9
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    Induced technological change in moderate and fragmented climate change mitigation regimes
    Technological Forecasting and Social Change. 2015; 90(Part A): 230-242. https://doi.org/10.1016/j.techfore.2013.10.027
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  • Panos E, Turton H, Densing M, Volkart K
    Powering the growth of Sub-Saharan Africa: the jazz and symphony scenarios of World Energy Council
    Energy for Sustainable Development. 2015; 26: 14-33. https://doi.org/10.1016/j.esd.2015.01.004
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    Locked into Copenhagen pledges - implications of short-term emission targets for the cost and feasibility of long-term climate goals
    Technological Forecasting and Social Change. 2015; 90(Part A): 8-23. https://doi.org/10.1016/j.techfore.2013.09.016
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  • Densing M
    Stochastic programming of time-consistent extensions of AVaR
    SIAM Journal on Optimization. 2014; 24(3): 993-1010. https://doi.org/10.1137/130905046
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  • Giannoulakis S, Volkart K, Bauer C
    Life cycle and cost assessment of mineral carbonation for carbon capture and storage in European power generation
    International Journal of Greenhouse Gas Control. 2014; 21: 140-157. https://doi.org/10.1016/j.ijggc.2013.12.002
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  • Densing M
    Dispatch planning using newsvendor dual problems and occupation times: application to hydropower
    European Journal of Operational Research. 2013; 228(2): 321-330. https://doi.org/10.1016/j.ejor.2013.01.033
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  • Densing M
    Price-driven hydropower dispatch under uncertainty
    In: Kovacevic RM, Pflug GC, Vespucci MT, eds. Handbook of risk management in energy production and trading. International series in operations research & management science. Boston: Springer; 2013:73-104. https://doi.org/10.1007/978-1-4614-9035-7_4
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    A long-term electricity dispatch model with the TIMES framework
    Environmental Modeling and Assessment. 2013; 18(3): 325-343. https://doi.org/10.1007/s10666-012-9346-y
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  • Volkart K, Bauer C, Boulet C
    Life cycle assessment of carbon capture and storage in power generation and industry in Europe
    International Journal of Greenhouse Gas Control. 2013; 16: 91-106. https://doi.org/10.1016/j.ijggc.2013.03.003
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  • Densing M, Turton H, Bäuml G
    Conditions for the successful deployment of electric vehicles - a global energy system perspective
    Energy. 2012; 47(1): 137-149. https://doi.org/10.1016/j.energy.2012.09.011
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  • Densing M
    Occupation times of the Ornstein-Uhlenbeck process: functional PCA and evidence from electricity prices
    Physica A: Statistical Mechanics and its Applications. 2012; 391(23): 5818-5826. https://doi.org/10.1016/j.physa.2012.07.040
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  • Kannan R, Turton H
    Cost of ad-hoc nuclear policy uncertainties in the evolution of the Swiss electricity system
    Energy Policy. 2012; 50: 391-406. https://doi.org/10.1016/j.enpol.2012.07.035
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    From the Copenhagen Accord to efficient technology protocols
    Energy Policy. 2012; 44: 341-353. https://doi.org/10.1016/j.enpol.2012.01.063
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    Swiss energy strategies under global climate change and nuclear policy uncertainty
    Swiss Journal of Economics and Statistics. 2012; 148(2): 317-345. https://doi.org/10.1007/BF03399369
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  • Sceia A, Altamirano-Cabrera J-C, Drouet L, Schulz TF, Vielle M
    Integrated assessment of Swiss GHG mitigation policies after 2012. Coupling the residential sector
    Environmental Modeling and Assessment. 2012; 17(3): 193-207. https://doi.org/10.1007/s10666-011-9288-9
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    Swiss climate change and nuclear policy: a comparative analysis using an energy system approach and a sectoral electricity model
    Swiss Journal of Economics and Statistics. 2012; 148(2): 275-316. https://doi.org/10.1007/BF03399368
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  • Bond SW, Gül T, Reimann S, Buchmann B, Wokaun A
    Emissions of anthropogenic hydrogen to the atmosphere during the potential transition to an increasingly H2-intensive economy
    International Journal of Hydrogen Energy. 2011; 36(1): 1122-1135. https://doi.org/10.1016/j.ijhydene.2010.10.016
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  • Gül T, Turton H
    Long-term scenarios of the global energy and transport system
    In: Wokaun A, Wilhelm E, eds. Transition to hydrogen. Pathways toward clean transportation. Cambridge: Cambridge University Press; 2011:177-211. https://doi.org/10.1017/CBO9781139018036.010
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    OSeMOSYS: the open source energy modeling system. An introduction to its ethos, structure and development
    Energy Policy. 2011; 39(10): 5850-5870. https://doi.org/10.1016/j.enpol.2011.06.033
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    The development and application of a temporal MARKAL energy system model using flexible time slicing
    Applied Energy. 2011; 88(6): 2261-2272. https://doi.org/10.1016/j.apenergy.2010.12.066
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    Climate change scenarios and Technology Transfer Protocols
    Energy Policy. 2011; 39(2): 844-853. https://doi.org/10.1016/j.enpol.2010.11.003
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  • Skea J, Chaudry M, Ekins P, Ramachandran K, Shakoor A, Wang X
    A resilient energy system
    In: Skea J, Ekins P, Winskel M, eds. Energy 2050. Making the transition to a secure low-carbon energy system. London: Routledge; 2011:145-186. https://doi.org/10.4324/9781849775311
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    The economics of low stabilization: model comparison of mitigation strategies and costs
    Energy Journal. 2010; 31: 11-48. https://doi.org/10.5547/ISSN0195-6574-EJ-Vol31-NoSI-2
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    Technology options for low stabilization pathways with MERGE
    Energy Journal. 2010; 31: 83-107. https://doi.org/10.5547/ISSN0195-6574-EJ-Vol31-NoSI-4
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  • Gül T, Kypreos S, Turton H, Barreto L
    An energy-economic scenario analysis of alternative fuels for personal transport using the Global Multi-regional MARKAL model (GMM)
    Energy. 2009; 34(10): 1423-1437. https://doi.org/10.1016/j.energy.2009.04.010
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  • Kannan R, Ekins P, Strachan N
    The structure and use of the UK MARKAL model
    In: International handbook on the economics of energy. Edward Elgar Publishing Ltd.; 2009:285-310.
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    Inclusion of technology diffusion in energy-systems models: some gaps and needs
    Journal of Cleaner Production. 2008; 16(1): S95-S101. https://doi.org/10.1016/j.jclepro.2007.10.008
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    Linking energy system and macroeconomic growth models
    Computational Management Science. 2008; 5(1-2): 95-117. https://doi.org/10.1007/s10287-007-0042-3
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    Supporting hydrogen based transportation: case studies with Global MARKAL Model
    Computational Management Science. 2008; 5(3): 207-231. https://doi.org/10.1007/s10287-007-0040-5
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    Stabilizing global temperature change below thresholds: Monte Carlo analyses with MERGE
    Computational Management Science. 2008; 5(1-2): 141-170. https://doi.org/10.1007/s10287-007-0049-9
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  • Kypreos S, Blesl M, Cosmi C, Kanudia A, Loulou R, Smekens K, et al.
    Times-EU: a Pan-European model integrating LCA and external costs
    International Journal of Sustainable Development and Planning. 2008; 3(2): 180-194. https://doi.org/10.2495/SDP-V3-N2-180-194
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  • Lafforgue G, Magné B, Moreaux M
    Energy substitutions, climate change and carbon sinks
    Ecological Economics. 2008; 67(4): 589-597. https://doi.org/10.1016/j.ecolecon.2008.01.008
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    Intermediate steps towards the 2000 W society in Switzerland: an energy-economic scenario analysis
    Energy Policy. 2008; 36(4): 1303-1317. https://doi.org/10.1016/j.enpol.2007.12.006
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    ECLIPSE: an integrated energy-economy model for climate policy and scenario analysis
    Energy. 2008; 33(12): 1754-1769. https://doi.org/10.1016/j.energy.2008.07.008
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  • Turton H, Moura F
    Vehicle-to-grid systems for sustainable development: an integrated energy analysis
    Technological Forecasting and Social Change. 2008; 75(8): 1091-1108. https://doi.org/10.1016/j.techfore.2007.11.013
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    Impact assessment of energy-related policy instruments on climate change and security of energy supply
    International Journal of Global Energy Issues. 2007; 27(1): 15-41. https://doi.org/10.1504/IJGEI.2007.012116
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  • Rafaj P, Kypreos S
    Internalisation of external cost in the power generation sector: analysis with global multi-regional MARKAL model
    Energy Policy. 2007; 35(2): 828-843. https://doi.org/10.1016/j.enpol.2006.03.003
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  • Schulz TF, Barreto L, Kypreos S, Stucki S
    Assessing wood-based synthetic natural gas technologies using the SWISS-MARKAL model
    Energy. 2007; 32(10): 1948-1959. https://doi.org/10.1016/j.energy.2007.03.006
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  • Spielmann M, Althaus HJ
    Can a prolonged use of a passenger car reduce environmental burdens? Life cycle analysis of Swiss passenger cars
    Journal of Cleaner Production. 2007; 15(11-12): 1122-1134. https://doi.org/10.1016/j.jclepro.2006.07.022
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  • Turton H, Barreto L
    Automobile technology, hydrogen and climate change: a long term modelling analysis
    International Journal of Alternative Propulsion. 2007; 1(4): 397-426. https://doi.org/10.1504/IJAP.2007.013332
    DORA PSI
  • Uddin SN, Barreto L
    Biomass-fired cogeneration systems with CO2 capture and storage
    Renewable Energy. 2007; 32(6): 1006-1019. https://doi.org/10.1016/j.renene.2006.04.009
    DORA PSI
  • Gül T, Stenzel T
    Intermittency of wind: the wider picture
    International Journal of Global Energy Issues. 2006; 25(3-4): 163-186. https://doi.org/10.1504/ijgei.2006.008990
    DORA PSI
  • Rafaj P, Barreto L, Kypreos S
    Combining policy instruments for sustainable energy systems: an assessment with the GMM model
    Environmental Modeling and Assessment. 2006; 11(4): 277-295. https://doi.org/10.1007/s10666-005-9037-z
    DORA PSI
  • Turton H, Barreto L
    Long-term security of energy supply and climate change
    Energy Policy. 2006; 34(15): 2232-2250. https://doi.org/10.1016/j.enpol.2005.03.016
    DORA PSI
  • Viguier L, Barreto L, Haurie A, Kypreos S, Rafaj P
    Modeling endogenous learning and imperfect competition effects in climate change economics
    Climatic Change. 2006; 79(1-2): 121-141. https://doi.org/10.1007/s10584-006-9070-1
    DORA PSI