The Impact of Emerging Renewable Energy on Capacity Mechanisms in Power Systems and Expert Opinion
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Anahtar Kelimeler
Kaynakça
- [1] C. Batlle, Ignacio J. Perez-Arriaga, “Design criteria for implementing a capacity mechanism in deregulated electricity markets” Utilities Policy Volume 16, Issue 3, September 2008, Pages 184-193[2] A. D. Baddeley, Denıse Scott, Rosemary Drynan and Janet C. Smıth, “Short‐Term Memory and The Lımıted Capacıty Hypothesıs”, British Journal of Psychology, Volume 60, Issue 1,[3] M. Cepeda, D. Finon, “How to correct for long-term externalities of large-scale wind power development by a capacity mechanism” Energy Policy Volume 61, October 2013, Pages 671-685,[4] Igor K. Shesho, Risto V. Filkoski and Done J. Tashevski, “Techno-Economic and Environmental Optimization of Heat Supply Systems in Urban Areas” Thermal Science: 2018, Vol. 22, Suppl. 5, pp. S1635-S1647[5] Bingtuan G., Xiaofeng L., Cheng W. and Yi T., “Game-theoretic energy management with storage capacity optimization in the smart grids” J. Mod. Power Syst. Clean Energy (2018) 6(4):656–667[6] D. Finona, V. Pignonb, “Electricity and long-term capacity adequacy: The quest for regulatory mechanism compatible with electricity market”, Utilities Policy, Volume 16, Issue 3, September 2008, Pages 143-158, doi.org/10.1016/j.jup.2008.01.002[7] H. Chao, “Demand Response in Wholesale Electricity Markets: The Choice of the Consumer Baseline,” Journal of Regulatory Economics, (2011). [8] W. Hogan William “Electricity Market Design Energy and Capacity Markets and Resource Adequacy”, Mossavar-Rahmani Center for Business and Government John F. Kennedy School of Government Harvard University, 2015[9] Dario Garozzo, Giuseppe Marco Tina and Dezso Sera, “Comparison of The Reactive Control Strategies in Low Voltage Network with Photovoltaic Generation and Storage” Thermaal Science: 2018, Vol. 22, Suppl. 3, pp. S887-S896[10] Bin L., Xingchen L., Xiaoqing B. and Zhineng L., “Storage capacity allocation strategy for distribution network with distributed photovoltaic generators”, J. Mod. Power Syst. Clean Energy (2018) 6(6):1234–1243[11] J. Grigorjeva, “Capacıty Mechanısms In the Eu: Natıonalızıng Energy Securıty”, Jacques Delors Institut – Polıcy Paper, 134, Berlin, 21 MAY 2015[12] S. Andoura, J.A. Vinois, “From the European Energy Community to the Energy Union, A Policy Proposal for the short and long-term”, Policy Paper No. 107, Jacques Delors Institute, January 2015.[13] ACER (2013), The Agency for The Cooperation of Energy Regulators, Capacity Remuneration Mechanisms and The Internal Market for Electricity Of 30 July 2013 Pursuant to Article 11 Of Regulation (Ec) No 713/2009[14] European Commission, DG Energy, Energy Union Package. A Framework Strategy for a Resilient Energy Union with a Forward-Looking Climate Change Policy, February 2015.[15] European Commission, DG Energy, Energy Union Package. Achieving 10% electricity interconnection target, February 2015.[16] S. Biricik, “Design of Unified Power Quality Conditioner for Power Quality Improvement in Distribution Network”, Balkan Journal Of Electrical & Computer Engineering, Vol. 6, No. 1, February 2018[17] G. Erbach, Briefing, “Capacity mechanisms for electricity”, European parliament, May 2017.
Ayrıntılar
Birincil Dil
İngilizce
Konular
Elektrik Mühendisliği
Bölüm
Araştırma Makalesi
Yazarlar
Mehmet Rıda Tür
*
0000-0001-5688-4624
Türkiye
Yayımlanma Tarihi
30 Temmuz 2019
Gönderilme Tarihi
11 Haziran 2019
Kabul Tarihi
2 Temmuz 2019
Yayımlandığı Sayı
Yıl 2019 Cilt: 7 Sayı: 3
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