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Analysis of the EU renewable energy directive by a techno-economic optimisation model. (2013). Lind, Arne ; Seljom, Pernille ; Espegren, Kari ; Lindberg, Karen ; Rosenberg, Eva ; Fidje, Audun .
In: Energy Policy.
RePEc:eee:enepol:v:60:y:2013:i:c:p:364-377.

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Cited: 33

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  2. Low-carbon spatial differences of renewable energy technologies: Empirical evidence from the Yangtze River Economic Belt. (2022). Yang, Yejun ; Wang, Yunshu ; Xie, Xiaohua ; Ma, Yinhan ; Liu, Hao.
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  3. Achieving ?55% GHG emissions in 2030 in Wallonia, Belgium: Insights from the TIMES-Wal energy system model. (2022). Arnould, Nathalie ; Orsini, Marco ; Gargiulo, Maurizio ; Coppens, Leo.
    In: Energy Policy.
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  4. Efficient spatial distribution of wind power plants given environmental externalities due to turbines and grids. (2021). Grimsrud, Kristine ; Lind, Arne ; Hagem, Cathrine ; Lindhjem, Henrik.
    In: Energy Economics.
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  5. Efficient spatial allocation of wind power plants given environmental externalities due to turbines and grids. (2020). Grimsrud, Kristine ; Lindhjem, Henrik ; Hagem, Cathrine.
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  6. Short-term solar and wind variability in long-term energy system models - A European case study. (2020). Lind, Arne ; Seljom, Pernille ; Haugan, Peter M ; Ringkjob, Hans-Kristian ; Mesfun, Sennai ; Wagner, Fabian.
    In: Energy.
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  7. Bidirectional linkage between a long-term energy system and a short-term power market model. (2020). Rosenberg, Eva ; Seljom, Pernille ; Fodstad, Marte ; Schaffer, Linn Emelie.
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  8. Power markets in transition: Decarbonization, energy efficiency, and short-term demand response. (2020). Weissbart, Christoph ; Mier, Mathias.
    In: Energy Economics.
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  9. Power Markets in Transition: Decarbonization,Energy Efficiency, and Short-Term Demand Response. (2019). Weissbart, Christoph ; Mier, Mathias.
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  10. Estimation of Energy Requirement of Jatropha Curcas L. Seedcake Briquettes under Compression Loading. (2018). Herak, David ; Kabutey, Abraham ; Ivanova, Tatiana ; Demirel, Cimen.
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  11. A review of modelling tools for energy and electricity systems with large shares of variable renewables. (2018). Ringkjob, Hans-Kristian ; Solbrekke, Ida Marie ; Haugan, Peter M.
    In: Renewable and Sustainable Energy Reviews.
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  12. Bangladesh power supply scenarios on renewables and electricity import. (2018). Das, Anjana ; Parikh, Kirit S ; Saini, Vinay Kumar ; Mazumder, Rahul ; Halder, Arideep.
    In: Energy.
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  13. Optimal location of renewable power. (2018). Bjornebye, Henrik ; Lind, Arne ; Hagem, Cathrine.
    In: Energy.
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  14. Optimal location of renewable power. (2017). Hagem, Cathrine ; Lind, Arne ; Bjornebye, Henrik.
    In: Discussion Papers.
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  15. Overview of Current Microgrid Policies, Incentives and Barriers in the European Union, United States and China. (2017). Hussain, Rashid ; Li, Wuhua ; Ali, Amjad ; Memon, Abdul Hameed ; Williams, Barry W ; He, Xiangning.
    In: Sustainability.
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  16. Impact of different levels of geographical disaggregation of wind and PV electricity generation in large energy system models: A case study for Austria. (2017). Nijs, Wouter ; Mayr, Dieter ; Huld, Thomas ; Schmidt, Johannes ; Simoes, Sofia ; Zeyringer, Marianne.
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  17. The impact of Zero Energy Buildings on the Scandinavian energy system. (2017). Tomasgard, Asgeir ; Lindberg, Karen Byskov ; Seljom, Pernille ; Sartori, Igor ; Doorman, Gerard .
    In: Energy.
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  18. The impact of policy actions and future energy prices on the cost-optimal development of the energy system in Norway and Sweden. (2017). Seljom, Pernille ; Tomasgard, Asgeir.
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  19. Can the household sector reduce global warming mitigation costs? sensitivity to key parameters in a TIMES techno-economic energy model. (2017). Amor, Mourad ; Vaillancourt, Kathleen ; Astudillo, Miguel F ; Pineau, Pierre-Olivier.
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  20. Prospective analysis of energy security: A practical life-cycle approach focused on renewable power generation and oriented towards policy-makers. (2017). Garcia-Gusano, Diego ; Garrain, Daniel ; Iribarren, Diego.
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  21. The role of the discount rates in energy systems optimisation models. (2016). Garcia-Gusano, Diego ; Kirkengen, Martin ; Lind, Arne ; Espegren, Kari .
    In: Renewable and Sustainable Energy Reviews.
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  22. A review on solid biofuel usage in Lithuania after the decommission of Ignalina NPP and compliance with the EU policy. (2016). Gaigalis, Vygandas ; Skema, Romualdas .
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  23. An analysis of the optimum renewable energy portfolio using the bottom–up model: Focusing on the electricity generation sector in South Korea. (2016). Park, Sangyong ; Gu, Dong ; Lee, Duk Hee ; Yun, Chang Yeol .
    In: Renewable and Sustainable Energy Reviews.
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  24. The Economic Viability of Renewable Portfolio Standard Support for Offshore Wind Farm Projects in Korea. (2015). Park, Jongkeun ; Min, Chang-Gi ; Kim, Mun-Kyeom ; Hur, Don .
    In: Energies.
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  25. Analysis of the fuel and energy transition in Lithuanian industry and its sustainable development in 2005–2013 in compliance with the EU policy and strategy. (2015). Gaigalis, Vygandas ; Skema, Romualdas .
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  26. Evolution of competition in energy alternative pathway and the influence of energy policy on economic growth. (2015). Yang, Honglin ; Tian, Lixin ; Wang, Lin.
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  27. Is the concept of ‘grid parity’ defined appropriately to evaluate the cost-competitiveness of renewable energy technologies?. (2015). Gu, Dong ; Hong, Jong Chul ; Park, Nyun-Bae .
    In: Energy Policy.
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  28. Fossil fuel and CO2 emissions savings on a high renewable electricity system – A single year case study for Ireland. (2015). Curtis, John ; o Gallachoir, B. P., ; Deane, J. P. ; Gaffney, F. ; Clancy, J. M..
    In: Energy Policy.
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  29. Analysis of the renewable energy promotion in Lithuania in compliance with the European Union strategy and policy. (2014). Markevicius, Antanas ; Gaigalis, Vygandas ; Katinas, Vladislovas ; Skema, Romualdas .
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  30. Power utility generation portfolio optimization as function of specific RES and decarbonisation targets – EPBiH case study. (2014). Merzic, Ajla ; Music, Mustafa ; Redzic, Elma ; Kazagic, Anes .
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  31. The impact of future energy demand on renewable energy production – Case of Norway. (2013). Lind, Arne ; Espegren, Kari Aamodt ; Rosenberg, Eva .
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  33. Achieving negative emissions with BECCS (bioenergy with carbon capture and storage) in the power sector: New insights from the TIAM-FR (TIMES Integrated Assessment Model France) model. (2014). Ricci, Olivia ; Selosse, Sandrine.
    In: Energy.
    RePEc:eee:energy:v:76:y:2014:i:c:p:967-975.

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  34. Market power, fuel substitution and infrastructure – A large-scale equilibrium model of global energy markets. (2014). Huppmann, Daniel ; Egging, Rudolf.
    In: Energy.
    RePEc:eee:energy:v:75:y:2014:i:c:p:483-500.

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  35. Electricity decarbonisation pathways for 2050 in Portugal: A TIMES (The Integrated MARKAL-EFOM System) based approach in closed versus open systems modelling. (2014). Silva, Patricia ; Pina, Andre ; Martins, Victor ; da Silva, Patricia Pereira ; Vasconcelos, Jorge ; Gerbelova, Hana ; Amorim, Filipa .
    In: Energy.
    RePEc:eee:energy:v:69:y:2014:i:c:p:104-112.

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  36. A prospective analysis of waste heat management at power plants and water conservation issues using a global TIMES model. (2014). Assoumou, Edi ; Bouckaert, Stephanie ; Selosse, Sandrine ; Maizi, Nadia.
    In: Energy.
    RePEc:eee:energy:v:68:y:2014:i:c:p:80-91.

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  37. Future prospects for nuclear power in France. (2014). Assoumou, Edi ; Maizi, Nadia.
    In: Applied Energy.
    RePEc:eee:appene:v:136:y:2014:i:c:p:849-859.

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  38. A Canadian 2050 energy outlook: Analysis with the multi-regional model TIMES-Canada. (2014). Alcocer, Yuri ; Kanudia, Amit ; Neji, Yosra ; Loulou, Richard ; Bahn, Olivier ; Marcy, Mathilde ; Labriet, Maryse ; Vaillancourt, Kathleen ; Waaub, Jean-Philippe ; Garbouj, Hichem ; Frenette, Erik ; Fertel, Camille .
    In: Applied Energy.
    RePEc:eee:appene:v:132:y:2014:i:c:p:56-65.

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  39. Integrating housing stock and energy system models as a strategy to improve heat decarbonisation assessments. (2014). Dodds, Paul E..
    In: Applied Energy.
    RePEc:eee:appene:v:132:y:2014:i:c:p:358-369.

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  40. Incentives to promote solar thermal energy in Spain. (2013). Pablo-Romero, Maria ; Sanchez-Braza, A. ; Perez, M..
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:22:y:2013:i:c:p:198-208.

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  41. The impact of future energy demand on renewable energy production – Case of Norway. (2013). Lind, Arne ; Espegren, Kari Aamodt ; Rosenberg, Eva .
    In: Energy.
    RePEc:eee:energy:v:61:y:2013:i:c:p:419-431.

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  42. Exploring the uncertainty around potential shale gas development – A global energy system analysis based on TIAM (TIMES Integrated Assessment Model). (2013). Gracceva, Francesco ; Zeniewski, Peter .
    In: Energy.
    RePEc:eee:energy:v:57:y:2013:i:c:p:443-457.

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  43. Electrification of the Canadian road transportation sector: A 2050 outlook with TIMES-Canada. (2013). Waaub, Jean-Philippe ; Bahn, Olivier ; Marcy, Mathilde ; Vaillancourt, Kathleen.
    In: Energy Policy.
    RePEc:eee:enepol:v:62:y:2013:i:c:p:593-606.

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  44. How to decarbonize the transport sector?. (2013). van der Zwaan, Bob ; Bob van der Zwaan, ; Keppo, Ilkka ; Johnsson, Filip.
    In: Energy Policy.
    RePEc:eee:enepol:v:61:y:2013:i:c:p:562-573.

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  45. Analysis of the EU renewable energy directive by a techno-economic optimisation model. (2013). Lind, Arne ; Seljom, Pernille ; Espegren, Kari ; Lindberg, Karen ; Rosenberg, Eva ; Fidje, Audun .
    In: Energy Policy.
    RePEc:eee:enepol:v:60:y:2013:i:c:p:364-377.

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  46. The effect of financial constraints on energy-climate scenarios. (2013). Ghoddusi, Hamed ; Krey, Volker ; Ekholm, Tommi ; Riahi, Keywan.
    In: Energy Policy.
    RePEc:eee:enepol:v:59:y:2013:i:c:p:562-572.

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  47. Fukushimas impact on the European power sector: The key role of CCS technologies. (2013). Maizi, Nadia ; Selosse, Sandrine ; Ricci, Olivia.
    In: Energy Economics.
    RePEc:eee:eneeco:v:39:y:2013:i:c:p:305-312.

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  48. Water modeling in an energy optimization framework – The water-scarce middle east context. (2013). Dubreuil, Aurelie ; Bouckaert, Stephanie ; Selosse, Sandrine ; Mazi, Nadia ; Assoumou, Edi.
    In: Applied Energy.
    RePEc:eee:appene:v:101:y:2013:i:c:p:268-279.

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  49. Literature Review of Energy-Economics Models, Regarding Technological Change and Uncertainty. (2013). Salas, Pablo .
    In: 4CMR Working Paper Series.
    RePEc:ccc:wpaper:003.

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  50. Assessment of Acceptable Swiss post-2012 Climate Policies. (2012). Vielle, Marc ; Sceia, Andre ; Weidmann, Nicolas ; Altamirano-Cabrera, Juan-Carlos .
    In: Swiss Journal of Economics and Statistics (SJES).
    RePEc:ses:arsjes:2012-ii-9.

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  51. The French biofuels mandates under cost uncertainty - an assesment based on robust optimization. (2012). Lorne, Daphne ; Tchung-Ming, Stephane.
    In: Working Papers.
    RePEc:hal:wpaper:hal-03206367.

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  52. Prospects of wind energy sector development in Serbia with relevant regulatory framework overview. (2012). Simonovia, Aleksandar ; Stupar, Slobodan ; Stanojevia, Marija ; Komarov, Dragan .
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:16:y:2012:i:5:p:2618-2630.

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  53. Renewables vs. energy efficiency: The cost of carbon emissions reduction in Spain. (2012). Linares, Pedro ; Lopez-Pea, alvaro ; Perez-Arriaga, Ignacio.
    In: Energy Policy.
    RePEc:eee:enepol:v:50:y:2012:i:c:p:659-668.

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  54. Climate mitigation under an uncertain technology future: A TIAM-World analysis. (2012). Kanudia, Amit ; Loulou, Richard ; Labriet, Maryse .
    In: Energy Economics.
    RePEc:eee:eneeco:v:34:y:2012:i:s3:p:s366-s377.

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  55. Global energy modelling — A biophysical approach (GEMBA) part 1: An overview of biophysical economics. (2012). Dale, M. ; Krumdieck, S. ; Bodger, P..
    In: Ecological Economics.
    RePEc:eee:ecolec:v:73:y:2012:i:c:p:152-157.

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  56. Modeling hourly electricity dynamics for policy making in long-term scenarios. (2011). Pina, Andre ; Ferro, Paulo ; Silva, Carlos.
    In: Energy Policy.
    RePEc:eee:enepol:v:39:y:2011:i:9:p:4692-4702.

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  57. Carbon value dynamics for France: A key driver to support mitigation pledges at country scale. (2011). Assoumou, Edi ; Maizi, Nadia.
    In: Energy Policy.
    RePEc:eee:enepol:v:39:y:2011:i:7:p:4325-4336.

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  58. Considering the energy, water and food nexus: Towards an integrated modelling approach. (2011). Tol, Richard ; Tol, Richard S. J., ; Mueller, Alexander ; Tol, Richard S. J., ; Hermann, Sebastian ; Komor, Paul ; Steduto, Pasquale ; Bazilian, Morgan ; Howells, Mark ; Yumkella, Kandeh K. ; Rogner, Holger ; Arent, Douglas ; Gielen, Dolf .
    In: Energy Policy.
    RePEc:eee:enepol:v:39:y:2011:i:12:p:7896-7906.

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  59. The role of energy-service demand reduction in global climate change mitigation: Combining energy modelling and decomposition analysis. (2011). Kesicki, Fabian ; Anandarajah, Gabrial.
    In: Energy Policy.
    RePEc:eee:enepol:v:39:y:2011:i:11:p:7224-7233.

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  60. Effort sharing in ambitious, global climate change mitigation scenarios. (2010). Savolainen, Ilkka ; Ekholm, Tommi ; Moltmann, Sara ; Syri, Sanna ; Soimakallio, Sampo ; Hohne, Niklas.
    In: Energy Policy.
    RePEc:eee:enepol:v:38:y:2010:i:4:p:1797-1810.

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  61. The iterative contribution and relevance of modelling to UK energy policy. (2009). Strachan, Neil ; Pye, Steve ; Kannan, Ramachandran .
    In: Energy Policy.
    RePEc:eee:enepol:v:37:y:2009:i:3:p:850-860.

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  62. Optimal capacity adjustments in electricity market models – an iterative approach based on operational margins and the relevant supply stack. (). Weber, Christoph ; Leisen, Robin ; Bcker, Benjamin.
    In: EWL Working Papers.
    RePEc:dui:wpaper:1806.

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