Combined effects of policies to increase energy efficiency and distributed solar generation: A case study of the Carolinas
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DOI: 10.1016/j.enpol.2019.110936
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- Thoyre, Autumn, 2015. "Energy efficiency as a resource in state portfolio standards: Lessons for more expansive policies," Energy Policy, Elsevier, vol. 86(C), pages 625-634.
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- Tatyana V. Malysheva & Izida I. Ishmuradova & Alla A. Yarlychenko, 2020. "Study of Trends in the Formation of Energy Intensity of Production and the Structure of "Energy Portfolio"," International Journal of Energy Economics and Policy, Econjournals, vol. 10(4), pages 36-42.
- Zhang, Xiaodong & Patino-Echeverri, Dalia & Li, Mingquan & Wu, Libo, 2022. "A review of publicly available data sources for models to study renewables integration in China's power system," Renewable and Sustainable Energy Reviews, Elsevier, vol. 159(C).
- Rosa, Carmen Brum & Rigo, Paula Donaduzzi & Rediske, Graciele & Moccellin, Ana Paula & Mairesse Siluk, Julio Cezar & Michels, Leandro, 2021. "How to measure organizational performance of distributed generation in electric utilities? The Brazilian case," Renewable Energy, Elsevier, vol. 169(C), pages 191-203.
- Virguez, Edgar & Wang, Xianxun & Patiño-Echeverri, Dalia, 2021. "Utility-scale photovoltaics and storage: Decarbonizing and reducing greenhouse gases abatement costs," Applied Energy, Elsevier, vol. 282(PA).
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Keywords
Energy efficiency; Roof-top photovoltaic (PV); Distributed solar; Renewables integration; Carbon dioxide emissions; Residential electricity demand; Unit commitment; Economic dispatch; Building codes and standards;All these keywords.
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