Security-constrained line loss minimization in distribution systems with high penetration of renewable energy using UPFC
Author:
Publisher
Springer Science and Business Media LLC
Subject
Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment
Link
http://link.springer.com/article/10.1007/s40565-017-0334-8/fulltext.html
Reference26 articles.
1. Suman N, Somnath R (2011) Network reconfiguration for electrical loss minimization. Int J Instrum Control Autom 1(2):22–28
2. Van Meerwijk AJH, Benders RMJ, Davila-Martinez A et al (2016) Swiss pumped hydro storage potential for Germany’s electricity system under high penetration of intermittent renewable energy. J Mod Power Syst Clean Energy 4(4):542–553. doi: 10.1007/s40565-016-0239-y
3. Bebic J, Walling R, O’Brien K et al (2009) The sun also rises. IEEE Power Energy Mag 7(3):45–54
4. Chen CS, Tsai CT, Lin CH et al (2011) Loading balance of distribution feeders with loop power controllers considering photovoltaic generation. IEEE Trans Power Syst 26(3):1762–1768
5. Lima SLS, Dias RFS, Watanabe EH (2013) Direct voltage control in grids with intermittent sources using UPFC. In: Proceedings of the 2013 Brazilian power electronics conference (COBEP), Gramado, Brazil, 27–31 October 2013, pp 974–980
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