[1]
Leung L C,Khator S K,Schnepp J.Planning substation capacity under the singer contingency scenario[J].IEEE Trans on Power Systems,1995(3):1442-1447.
DOI: 10.1109/59.466506
Google Scholar
[2]
Fan M T, Zhang Z P, et al. Enabling Technologies for Active Distribution Systems [J], Proceedings of the CSEE, 2013 , 33(22): 12-18.
Google Scholar
[3]
You Y, Liu D, Technology and Its Trends of Active Distribution Network [J], Automation of Electric Power System, 2012 , 36(18): 10-14.
Google Scholar
[4]
Kong T, Cheng H Z, et al. Review of Power Distribution Network Planning [J]. Power System Technology, 2009, 33 (19): 92-99.
Google Scholar
[5]
Yang W J, Kang C Q, et al. Short Term Probabilistic Load Forecasting Based on Statistics of Probability Distribution of Forecasting Errors. Automation of Electric Power System, 2006. 30(19): 47-52.
Google Scholar
[6]
Kurata E,Mori H.Short-term load forecasting using informative vector machine.Electric Engineering in Japan,2009, 166(2):23-31.
DOI: 10.1002/eej.20693
Google Scholar
[7]
Li C B,Fu M P,Shang J C,et al.A novel probabilistic short-term load forecasting method or large power grid.Proceedings of the 2010 Asia-Pacific Power and Energy Engineering Conference(APPEEC2010),Chengdu,2010: 1-4.
DOI: 10.1109/appeec.2010.5448645
Google Scholar
[8]
Hadian A,Haghifa Kang C Q,Guo L,Bai L C,et al.Joint analysis of power system reliability and market price considering the uncertainties of load forecasts.Proceedings of the 2006 International Conference on Power System Technology,Chongqing,2006: 1-6.
DOI: 10.1109/icpst.2006.321876
Google Scholar
[9]
M R,Zohrevand J,et al.Probabilistic approach for renewable dg placement in distribution systems with uncertain and time varying loads.IEEE Power and Energy Society General Meeting,2009: 1-8.
DOI: 10.1109/pes.2009.5275458
Google Scholar
[10]
Zeng M, Li N, et al. Load forecasting compatible with demand-side resources [J]. Electric Power Automation Equipment, 2013, 33(10): 59-73.
Google Scholar
[11]
H Z Chen. Active distribution network planning via distributed generation and demand response. Information on http: /d. wanfangdata. com. cn/Conference_WFHYXW571745. aspx.
Google Scholar
[12]
Wang Z D. Flexible Transmission System Expansion Considering Accommodation Capacity of Large Scale Wind Power [D]. Shanghai Jiao Tong University. (2011).
Google Scholar
[13]
Fan M, Liang H, Zhang Z, et al. Cost-benefit analysis of integration DER into distribution network[C]. CIRED 2012 Workshop: Integration of Renewable into the Distribution Grid, Lisbon, Portugal, 2012: 1-4.
DOI: 10.1049/cp.2012.0750
Google Scholar
[14]
Zhang J H, Zeng B, et al. Key Issues and Research Prospects of Active Distribution Network Planning [J], Transactions of China Electrotechnical Society, 2014 , 29(2): 13-20.
Google Scholar
[15]
Zeng B, Liu N, et al. Bi-level Scenario Programming of Active Distribution Network for Promoting Intermittent Distributed Generation Utilization [J]. Transactions of China Electrotechnical Society, 2013, 28(9), 155-171.
Google Scholar