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作 者:顾丽鸿[1] 周孝信[2] 陶洪铸[3] 严剑峰[2]
机构地区:[1]上海交通大学电气与电子工程学院,上海市闵行区200240 [2]中国电力科学研究院,北京市海淀区100192 [3]国家电网公司,北京市西城区100031
出 处:《电网技术》2010年第12期36-43,共8页Power System Technology
基 金:国家重点基础研究发展计划(973项目)项目资助(2004CB217904)~~
摘 要:应用扩展的多自由度强迫振动理论和特征值分析方法,研究了局部弱联诱发互联电网发生区域强迫振荡的机制。针对中国电力网络现阶段互联的特点,指出弱阻尼局部振荡是系统稳定运行的潜在威胁。重点分析了电力系统多机强迫振荡与系统固有振荡频率、机组相关因子的关系。提出了如果扰动源振荡频率接近区间振荡模式,局部振荡机组满足与区间振荡模式相关性较强等条件,就会诱发系统发生区域强迫低频振荡。根据广域测量系统记录的数据,应用该机制分析了华中电网的2次强迫低频振荡事故,结果验证了该机制的合理性和正确性。By use of the theory of multiple-degree-of- freedom (MDOF) systems and eigenvalue analysis, the mechanism of inter-area forced oscillation in interconnected power grid brought out by local weak interconnection is researched. According to current features of power gird interconnection in China, it is pointed out that the underdamped local oscillation is the potential menace to system stable operation. The relation between multi-machine forced oscillation and system natural oscillation frequency and that between multi-machine forced oscillation and correction factors of generation units are emphatically anlayzed. It is proposed that if following conditions are satisfied, i.e., the oscillation frequency of perturbance source is close to that of inter-area oscillation mode and there is strong correlativity between locally oscillated units and inter-area oscillation mode, the inter-area forced low frequency oscillation will be caused to happen. Finally, based on the data recorded by wide area measurement system (WAMS), two forced low-frequency oscillation faults in Central China Power Grid are analysed using the proposed mechanism, and analysis results show that the proposed mechanism is rational and correct.
关 键 词:小干扰稳定 特征值分析 多自由度系统 强迫振荡 广域测量系统
分 类 号:TM71[电气工程—电力系统及自动化]
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