[1]
LI Xin-ran, PENG Guo-rong, OU Yang-li. Design and Application of Distribution Network Building Size Evaluation System[J]. Electrotechnical Application, 2007, 26(12): 42-46.
Google Scholar
[2]
LIU You-qiang, LIN Hai-bo. Research on Evaluation of Construction Scale of District HV Distribution Network[J]. Guangdong Electric Power, 2007, 20(01): 14-18.
Google Scholar
[3]
LI Xin-ran, PENG Guo-rong, ZHU Xiang-you, OU Yang-li. Fuzzy Synthetic Evaluation Method of Planning Size of Distribution Grid[J]. Proceedings of the Chinese Society of Universities for Electric Power System and its Automation, 2007, 20(01): 14-18.
Google Scholar
[4]
XIE Wei-lin, YeJianfeng. Analysis of Power Grid Planning and Safety Operation [J]. Guide to Business, 2011, (09): 285-286.
Google Scholar
[5]
Chen Jiatong. The safety factor of the power development planning [J]. Electric Power Technologic Economics, 2004, 16(05): 28-30.
Google Scholar
[6]
SHU Yin-biao, ZHANG Wen-liang, ZHOU Xiao-xin, TANG Yong, GUO Qiang. Security Evaluation of UHV Synchronized Power Grid [J]. Proceedings of the CSEE, 2007, 27(34): 1-6.
Google Scholar
[7]
GAOHaibo. Safety Assessment of the Transmission Grid [J]. Northeast Electric Power Technology, 2003, (05): 47-48.
Google Scholar
[8]
ZHANG Gui-lin, YIN Xing-guang, LIU Ruo-xi , Analysis on Safety Index of Urban Grids[J]. Guangdong Electric Power, 2011, 24(07): 17-21.
Google Scholar
[9]
JIAO Liping, BiXun. Construction of multi-adaptive grid planning and construction of information systems and applications[J]. Yunnan Electric Power, 2010, (10): 39-40.
Google Scholar
[10]
YANG Gao-feng, KANG Chong-qing, Furong Li, Daniel Kirschen. Flexibility and risk assessment of power grid planning schemes[J]. Power System Protection and Control, 2008, 36(23): 1-8.
Google Scholar
[11]
YANG Gao-feng, KANG Chong-qing, GU Xing-kai, YU De-long. Scenario Analysis Based Flexibility Evaluation of Power Grid Planning under Deregulation[J]. Power System Technology, 2006, 30(14): 64-70.
Google Scholar
[12]
XIONG Wei1, DAI Ai-ying, YANG Wei-hong. Analysis on the Development Synergy of Tianjin Power Grid and Economy[J]. Electric Power Construction, 2010, 31(07): 41-45.
Google Scholar
[13]
ZHU Geng-fu, ZHOU Jing. Relevant planning coordinate analysis in EIA of urban power network planning[J]. Electric Power Technology and Environmental Protection, 2010, 26(03): 36-38.
Google Scholar
[14]
YU Hui-ping, LIU Jidong, CHENG Haozhong, CHEN Zhangchao, MA Zeliang. A New Approach to Coordination of Investment and Reliability in Electric PowerNetwork Planning[J], Electric Power Automation Equipment, 2001, 21(02): 5-8.
Google Scholar
[15]
ZHU Jianqiang, CHENG Haozhong, WU Peng, YAO Liangzhong, Masoud BAZARGAN. A Preliminary Method for Urban Transmission Network Planning Required by Environmental Protection[J]. Automation of Electric Power Systems, 2009, 33(16): 30-34.
Google Scholar
[16]
RUAN Zhi-feng. Grid planning program economic assessment method[J]. Science and Technology Innovation Herald, 2008, (28): 141.
Google Scholar
[17]
GUAN Pei, LI Zhi-yong. Economic Analysis of Urban Power Network Planning Projects Based on With & Without Comparison Evaluation Method[J]. Shaanxi Electric Power, 2009, (10): 92-96.
Google Scholar
[18]
YANG Wei-hong, CAI Qi, HE Yong-xiu, DAI Ai-ying, WU Liang-qi. Evaluation of coordination between grid development and economy development in Beijing[J]. East China Electric Power, 2009, 37(10): 1627-1630.
Google Scholar
[19]
SONG Ting. Research on Reliability. Economy and Global Optimization of Power Grid Planning in Power Market Environment[J]. Shaanxi Electric Power, 2008, (01): 78-82.
Google Scholar
[20]
SUN Xin, LIU Ze-hong, YIN Yong-hua. UHV Synchronous Power Network Constitution in China and Its Economic and Safety Analysis[J]. Electric Power Construction, 2007, 28(10): 7-11.
Google Scholar