Abstract:The traditional static security analysis based on the data of one time section can not adapt to the continuous state changing of power system appropriately. To improve the deficiency, a time process-oriented static security analysis method is presented in the paper. Firstly, the basic idea of time process-oriented method is explained. Secondly, with the abundant measurements and load forecasting information, the characteristic vector of each time section is extracted. Then the load curve is partitioned into several time sub-processes by the improved K-means clustering algorithm considering the successive time series of power load. Thirdly, the indices extracting the maximum and minimum characteristic sections of every time sub-process are defined. Then the representativeness of the characteristic sections is verified. While ensuring the static security, the time process-oriented method can improve the utilization rate of transmission lines to some extent. Finally, the calculation and analysis of IEEE 30-bus system shows the effectiveness of the method proposed in the paper.
余加喜, 郭志忠, 白雪峰, 刘瑞叶. 基于面向时间过程的静态安全分析[J]. 电工技术学报, 2010, 25(10): 142-149.
Yu Jiaxi, Guo Zhizhong, Bai Xuefeng, Liu Ruiye. Power System Static Security Analysis With Time Process-Oriented Method. Transactions of China Electrotechnical Society, 2010, 25(10): 142-149.
[1] 吴际舜. 电力系统静态安全分析[M]. 上海: 上海交通大学出版社, 1985. [2] Carpentier J. Static security assessment and control: a short survey[C]. APT 93 Proceedings, 1993: 1-9. [3] 李响, 张国庆, 郭志忠. 基于输电断面N-1静态安全潮流约束的联切负荷方案[J]. 电力系统自动化, 2004, 28(22): 42-44. Li Xiang, Zhang Guoqing, Guo Zhizhong. Scheme for load-shedding based on the transmission interface N-1 static safety power flow restriction[J]. Automation of Electric Power System, 2004, 28(22): 42-44. [4] Chaudhuri B, Majumder R, Pal B. Wide-area measurement-based stabilizing control of power system considering signal transmission delay[J]. IEEE Transactions on Power System, 2004, 19(5): 1971- 1979. [5] 郭志忠. 电网自愈控制方案[J]. 电力系统自动化, 2005, 29(10): 85-91. Guo Zhizhong. Scheme of self-healing control frame of power grid[J]. Automation of Electric Power Systems, 2005, 29(10): 85-91. [6] 方兴. 面向过程配电网优化研究[D]. 哈尔滨: 哈尔滨工业大学, 2005. [7] 陈得治. 配电网时间过程分析与控制研究[D]. 哈尔滨: 哈尔滨工业大学, 2006. [8] 毛安家. 面向过程测量数据的暂态稳定算法研究[D]. 哈尔滨: 哈尔滨工业大学, 2006. [9] 任江波. 电力系统过程状态估计研究 [D]. 哈尔滨: 哈尔滨工业大学, 2007. [10] 赵希正. 中国电力负荷特性分析与预测[M]. 北京: 中国电力出版社, 2002. [11] Mehmed Kantardzic. Data mining concepts, models, methods, and algorithms[M]. New Jersey: Wiley- IEEE Press, 2002. [12] Xu Rui, Donald Wunsch Ⅱ. Survey of clustering algorithms[J]. IEEE Transactions on Neural Networks, 2005, 16(3): 645-678. [13] Ejebe G C, Wollenberg B F. Automatic contingency selection[J]. IEEE Transactions on Power Apparatus and Systems, 1979, PAS-98(1): 97-109. [14] Halpin T F, Fischl R, Fink R. Analysis of automatic contingency selection algorithms[J]. IEEE Transactions on Power Apparatus and Systems, 1985, 103 (5): 938-945. [15] Ekwue A O, Chebbo A M, Bradley M E, et al. Experiences of automatic contingency selection algorithms on the NGC system[J]. IEEE Power Engineering Review, 1998, 18(3): 53-54. [16] 李卫星. 静态安全约束下互联电网输电能力的研 究[D]. 哈尔滨: 哈尔滨工业大学, 2006. [17] 傅旭, 王锡凡, 解利斌. 考虑N-1静态安全的电力系统最大负荷能力计算方法 [J]. 电网技术, 2006, 30(6): 6-10. Fu Xu, Wang Xifan, Xie Libin. A new method of calculating maximum loadability of power system considering N-1 static security[J]. Power System Technology, 2006, 30(6): 6-10.