[1] REN D, ZHAO Y, SHI J. Proposal on large-scale wind power transmission and accommodation supporting policy[J]. Large-Scale Wind Power Grid Integration, 2016: 277-288. [2] 孙真真,李征. 分散式风电接入配电网的电压稳定性研究[J]. 电子设计工程,2015,23(16):152-156. SUN Zhenzhen, LI Zheng. Study on the voltage stability of distributed wind power access to distribution network[J].Electronic Design Engineering, 2015, 23(16): 152-156. [3] XIE J, WANG K, FENG D, et al . A security-constrained flexible demand scheduling strategy for wind power accommodation[J]. International Transactions on Electrical Energy Systems, 2016, 26(6): 1171-1183. [4] 谢国辉,樊昊. 东北地区风电运行消纳形势及原因分析[J]. 中国电力,2014,47(10):152-155. XIE Guohui, FAN Hao. Analysis on the situations and reasons of wind power operation and consumption in northeast China[J].Electric Power, 2014, 47(10): 152-155. [5] 苏辛一,徐东杰,韩小琪,等. 风电年最大弃风电量计算方法及分析[J]. 中国电力,2014,47(7):96-100. SU Xinyi, XU Dongjie, HAN Xiaoqi, et al . A computing method for maximum annual wind energy curtailment[J]. Electric Power, 2014, 47(7): 96-100. [6] WANG J, XU W. Present situation and problems of large-scale wind power transmission and accommodation policy[J]. Large-Scale Wind Power Grid Integration, 2016: 257-276. [7] 李君秋,田宏. 基于复杂网络理论的电力网络节点安全性分析[J]. 大连交通大学学报,2015,36(2):80-83. LI Junqiu, TIAN Hong. Node security analysis of power network based on community structure[J]. Journal of Dalian Jiaotong University, 2015, 36(2): 80-83. [8] 梅丹,王公宝,胡伟文,等. 基于复杂网络理论的电力系统脆弱性研究概述[J]. 电子设计工程,2014,22(6):190-192. MEI Dan, WANG Gongbao, HU Weiwen, et al . Vulnerability analysis of power system based on complex networks theory [J].Electronic Design Engineering, 2014, 22(6): 190-192. [9] 李海波,鲁宗相,乔颖,等. 基于非时序生产模拟的风电消纳评估方法[J]. 电力建设,2015,36(10):129-137. LI Haibo, LU Zongxiang, QIAO Ying, et al . Evaluation method of wind power accommodation capacity based on non-sequential production simulation[J]. Electric Power Construction, 2015, 36(10): 129-137. |