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1

Energy in Brazil: Towards a renewable energy dominated system. Earthscan, 2009.

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2

Justi, Eduard W. A Solar-Hydrogen Energy System. Springer US, 1987.

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3

Office, General Accounting. Department of Energy: Solar and Renewable Resources Technologies Program : report to the Chairman, Subcommittee on Energy and Water Development, Committee on Appropriations, House of Representatives. The Office, 1997.

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4

Deo, Pramod. Electricity reforms & green power development: Regulatory and tariff issues. World Institute of Sustainable Energy, 2005.

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5

Jayaweera, Dilan, ed. Smart Power Systems and Renewable Energy System Integration. Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-30427-4.

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6

Ruppel, Oliver Christian, and Bernd Althusmann. Perspectives on energy security and renewable energies in Sub-Saharan Africa: Practical opportunities and regulatory challenges. Macmillan Education Namibia, 2015.

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7

Jens, Wirth, and World Bank, eds. Concentrating solar power in developing countries: Regulatory and financial incentives for scaling up. World Bank, 2012.

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8

San Francisco (Calif.). City Attorney's Office. Before the United States Federal Energy Regulatory Commission: Application for preliminary permit, San Francisco Oceanside wave energy project. Office of the City Attorney, 2009.

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9

Porter, Kevin. REPiS: The renewable electric plant information system, 1999 edition. National Renewable Energy Laboratory, 2000.

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10

Withrow, Kent. The State of Wisconsin Energy Geographic Information System. Wisconsin Energy Bureau, Dept. of Administration, 1996.

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11

Power system design and applications for alternative energy sources. Prentice Hall, 1989.

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12

Vezzoli, Carlo. Designing Sustainable Energy for All: Sustainable Product-Service System Design Applied to Distributed Renewable Energy. Springer Nature, 2018.

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13

India. Central Board of Irrigation and Power, India. Ministry of New and Renewable Energy, and Indian Renewable Energy Development Agency, eds. Compendium of regulations and tariff orders issued by regulatory commissions for renewable energy sector in India. Central Board of Irrigation & Power, 2010.

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14

India. Ministry of New and Renewable Energy. Compendium of regulations & tariff orders issued by regulatory commissions for renewable energy sources in India. Ministry of New and Renewable Energy, 2015.

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15

Bauer, Thomas. Thermophotovoltaics: Basic Principles and Critical Aspects of System Design. Springer-Verlag Berlin Heidelberg, 2011.

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16

M, Marwali, and Dai Min, eds. Integration of green and renewable energy in electric power systems. Wiley, 2010.

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17

(Gotthard), Stein G., ed. Tightening the Reins: Towards a Strengthened International Nuclear Safeguards System. Springer Berlin Heidelberg, 2000.

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18

Universität zu Köln. Energiewirtschaftliches Institut, ed. The economics of renewable electricity market integration: An empirical and model-based analysis of regulatory frameworks and their impacts on the power market. Oldenbourg Industrieverlag, 2012.

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19

Office, General Accounting. Department of Energy: Opportunity to improve management of major system acquisitions : report to the Chairman, Committee on Governmental Affairs, U.S. Senate. The Office, 1996.

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20

Kamins, Sara. Tracking system operational determination: Draft joint agency staff report. California Energy Commission, 2008.

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21

Office, General Accounting. Department of Energy: National priorities needed for meeting environmental agreements : report to the Secretary of Energy. U.S. General Accounting Office, 1995.

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22

Shea, Kevin. Build your own small wind power system. McGraw-Hill, 2012.

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23

Efken, David. Pushing the power of alternative energy resources: Making better use of PURPA, the Public Utility Regulatory Policies Act. Public Citizen, Critical Mass Energy Project, 1987.

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24

New Zealand. Ministry of Economic Development. Powering our future: Towards a sustainable low emissions energy system : draft New Zealand energy strategy to 2050. Ministry of Economic Development, 2006.

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25

Yürüm, Yuda. Hydrogen Energy System: Production and Utilization of Hydrogen and Future Aspects. Springer Netherlands, 1995.

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26

McKinney, Jim. Regulatory concepts on sustainability goals for the Alternative and Renewable Fuel and Vehicle Technology Program: Draft staff paper. California Energy Commission, 2008.

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27

Bevrani, Hassan. Robust Power System Frequency Control. Springer Science+Business Media, LLC, 2009.

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28

Siddiqui, Omar, Roger Bedard, and George Hagerman. System level design, performance and costs for San Francisco California Energetech offshore wave power plant. EPRI, 2004.

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29

Siddiqui, Omar, Roger Bedard, and George Hagerman. System level design, performance and costs for San Francisco California Pelamis offshore wave power plant. EPRI, 2004.

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30

Lester, Richard K. Unlocking energy innovation: How America can build a low-cost, low-carbon energy system. MIT Press, 2012.

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31

International Symposium of Global COE (2nd 2010 Kyoto, Japan). Zero-carbon energy Kyoto 2010: Proceedings of the second International Symposium of Global COE Program "Energy Science in the Age of Global Warming--Toward CO₂ Zero-Emission Energy System". Springer, 2011.

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32

United States. Congress. House. Committee on Government Reform. Subcommittee on Energy Policy, Natural Resources, and Regulatory Affairs. Energy: Maximizing resources, meeting needs and retaining jobs : hearing before the Subcommittee on Energy Policy, Natural Resources, and Regulatory Affairs of the Committee on Government Reform, House of Representatives, One Hundred Seventh Congress, second session, June 17, 2002. U.S. G.P.O., 2003.

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33

How to live off-grid: Journey outside the system. Doubleday, 2007.

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34

Golling, Christiane. A cost-efficient expansion of renewable energy sources in the European electricity system: An integrated modelling approach with a particular emphasis on diurnal and seasonal patterns. Oldenbourg Industrieverlag, 2012.

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35

Office, General Accounting. Department of Energy: Problems and progress in managing plutonium : report to the chairman, Subcommittee on Energy and Power, Committee on Commerce, House of Representatives. The Office, 1998.

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36

New Jersey. Legislature. General Assembly. Telecommunications and Utilities Committee. Committee meeting of Assembly Telecommunications and Utilities Committee: Testimony concerning public utility and cable system reliability standards and the quality of services provided to their customers: [May 27, 2004, Trenton, New Jersey]. The Unit, 2004.

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37

Kitto, Bill. Commerce energy biogas/PV minigrid renewable resources program: Making renewables part of an affordable and diverse electric system in California. [California Energy Commission], 2012.

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38

Renewable Energy System Design. Elsevier Science & Technology Books, 2014.

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39

Renewable Energy System Design. Elsevier, 2014. http://dx.doi.org/10.1016/c2009-0-20257-1.

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40

Sotnyk, M. Power supply for educational institutions: efficiency and alternatives. Accent Graphics Communications & Publishing, 2020. http://dx.doi.org/10.29013/msotnyk.pseiea.2020.146.

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Proposed methodological approaches to modeling short-term forecasting and long-term planning of electrical consumption in educational institutions based on retrospective data. A logic-structural model and software of the circuit “object of monitoring of electric consumption — factors of influence — regulatory tools” of an automated system for controlling the efficiency of energy consumption in educational institutions have been developed. There are given practical recommendations of feasibility study of introduction of alternative power supply sources in educational institutions, in particular: solar generation, heat pumps, autonomous energy sources, etc. Proposed scientific and methodological approaches to the introduction of an organizational and economic mechanism for managing the development of renewable energy in educational institutions and a motivation system for employees of the energy management service. The monograph is a generalization of scientific research conducted by employees of Sumy State University during the state budget research work “Model of an efficiency management and forecasting system for the consumption of electric energy” (State Registration No. 0118U003583). The monograph is intended for researchers and specialists in the implementation of energy management systems
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41

van Leeuwen, Matthijs, and Martha Roggenkamp. Regulating Electricity Storage in the European Union. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198822080.003.0009.

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The chapter discusses the EU regulatory framework governing electricity storage. The obligation to reduce greenhouse gas emissions and the subsequent increase of electricity production from intermittent renewable energy sources is causing problems for balancing demand and supply, thus also balancing networks. Electricity storage is key to managing any excess electricity production and avoiding negative prices. However, this development takes place in a liberalized energy market, where network operators must act independently from production and supply. Establishing the purpose of electricity storage and where storage can or should be placed is crucial. The authors present the reasons for and the types of electricity storage available; analyse the EU legal framework ; identify potential obstacles; and present pros and cons for positioning storage in the electricity system. Finally, they discuss whether the EU Commission’s proposal to legislate electricity storage meets the requirements for providing cost efficiency and thus provides sufficient regulatory certainty.
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42

Eloghene Okedu, Kenneth, Ahmed Tahour, and Abdel Ghani Aissaou, eds. Wind Solar Hybrid Renewable Energy System. IntechOpen, 2020. http://dx.doi.org/10.5772/intechopen.77440.

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43

Cao, Wenping, and Yihua Hu, eds. Renewable Energy - Utilisation and System Integration. InTech, 2016. http://dx.doi.org/10.5772/59389.

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44

(Editor), Jun Miyake, ed. Biohydrogen III: Renewable Energy System by Biological Solar Energy Conversion. Elsevier Science, 2004.

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45

Yasuo, Igarashi, Matthias Rogner, and Yasuo Asada. Biohydrogen III: Renewable Energy System by Biological Solar Energy Conversion. Elsevier Science, 2004.

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46

Smart Power Systems and Renewable Energy System Integration. Springer, 2018.

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47

Sustainable Energy and Environment: An Earth System Approach. Taylor & Francis Group, 2019.

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48

Nawaz, Muhammad, and Sandeep Narayan Kundu. Sustainable Energy and Environment: An Earth System Approach. Apple Academic Press, Incorporated, 2019.

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49

Nawaz, Muhammad, and Sandeep Narayan Kundu. Sustainable Energy and Environment: An Earth System Approach. Apple Academic Press, Incorporated, 2019.

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50

Long-Term Integration of Renewable Energy Sources into the European Energy System. Physica-Verlag HD, 1998. http://dx.doi.org/10.1007/978-3-642-59015-3.

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