Huang Liuqiang,Guo Jianbo,Xu Shiyun,et al.Wide-area multi-FACTS coordinated control strategy for multiple load cases[J].Power System Protection and Control,2013,41(18):1-8(in Chinese).
Zuo Yuxi,Wang Yating,Xing Lin,et al.Applied research on new types of high capacity FACTS devices in northwest 750 kV power grid[J].Power System Technology,2013,37(8):2349-2354(in Chinese).
[5]
Wibowo R S,Yorino N,Eghbal M,et al.FACTS devices allocation with control coordination considering congestion relief and voltage stability[J].IEEE Transactions on Power Systems,2011,26(4):2302-2310.
[6]
Xinghao F,Chow J H,Xia J,et al.Sensitivity methods in the dispatch and siting of FACTS controllers[J].IEEE Transactions on Power Systems,2009,24(2):713-720.
Zhang Jian,Ji Ruifang,Li Guoqing.Study of enhancement of available transfer capability using TCSC optimal allocation[J].Power System Protection and Control,2012,40(1):23-28(in Chinese).
[9]
Ya-Chin C.Multi-objective optimal SVC installation for power system loading margin improvement[J].IEEE Transactions on Power Systems,
[10]
Gitizadeh M,Khalilnezhad H,Hedayatzadeh R.TCSC allocation in power systems considering switching loss using MOABC algorithm[J].
Zhao Yuan,Dong Li,Xie Kaigui.Research on optimal placement of FACTS devices based on reliability cost/benefits analysis[J].Power System Protection and Control,2012,40(1):107-114(in Chinese).
Zhang Xiaohui,Dong Xinhua.Research on multi-objective scheduling for low-carbon power system with wind farms[J].Power System Technology,2013,37(1):24-31(in Chinese).
Luo Yi,Liu Mingliang.Research on environmental and economic dispatch for isolated microgrid system taken risk reserve constraints into account[J].Power System Technology,2013,37(10):2705-271113 (in Chinese).
Li Zhihuan,Duan Xianzhong.Comparison and analysis of multiobjective evolutionary algorithm for reactive power optimization15 [J].Proceedings of the CSEE,2010,30(10):57-65(in Chinese).
[22]
Taher S A,Amooshahi M K.New approach for optimal UPFC placement using hybrid immune algorithm in electric power systems[J].
[23]
International Journal of Electrical Power & Energy Systems,2012,43(1):899-909.
Li Qian,Liu Tianqi,Li Xingyuan.A new optimized dispatch method for power grid connected with large-scale wind farms[J].Power System Technology,2013,37(3):733-739(in Chinese).
Huang Liuqiang,Guo Jianbo,Sun Huadong,et al.Intelligent computation based coordinated configuration of multi-FACTS devices[J].Power System Technology,2013,37(4):942-946(in Chinese).
[28]
王锡凡,方万良,杜正春.现代电力系统分析[M].北京:科学出版社,2012:209-210.
[29]
杨晓嵩.含柔性交流输电设备的电网可靠性评估及优化配置模型研究[D].重庆:重庆大学.2012.
[30]
Cai L J,Erlich I,Stamtsis G.Optimal choice and allocation of FACTS devices in deregulated electricity market using genetic algorithms
[31]
[C]//Power Systems Conference and Exposition.2004:201-207.
[32]
Ali A,Mehdi A.A multi-objective gravitational search algorithm based approach of power system stability enhancement with UPFC[J].Journal of Central South University,2013,20(6):1536-1544.
Tang Kezong,Xiao Xuan,Jia Jianhua,et al.Adaptive particle swarm optimization algorithm based on discrete estimate strategy of diversity [J].Journal of Nanjing University of Science and Technology,2013,37(3):344-349(in Chinese).
[38]
谢昶.电网检修计划优化编制方法研究及应用[D].北京:华北电力大学,2013.
[39]
Iyambo P K,Tzoneva R.Transient stability analysis of the IEEE 14-bus electric power system[C]//AFRICON.2007:1-9.
Yan Nannan,Fu Zhengcai.Coordinated design of UPFC based on multi-objective particle swarm optimization[J].Power System Protection and Control,2010,38(8):43-48(in Chinese).
Li Qian,Gong Jun,Tang Jiafu.Multi-objective particle swarm optimization algorithm for cross-training programming[J].Control Theory & Applications,2013,30(1):17-22(in Chinese).
Liu Wenying,Xie Chang,Wen Jing,et al.Optimization of transmission network maintenance scheduling based on niche multi-objective particle swarm algorithm[J].Proceedings of the CSEE,2013,33(4):141-148(in Chinese).