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基于微型PMU的配电线路抗差参数辨识 被引量:14
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作者 薛安成 徐飞阳 +3 位作者 游宏宇 徐劲松 kenneth e.martin 毕天姝 《电力自动化设备》 EI CSCD 北大核心 2019年第2期1-7,43,共8页
微型相量测量单元装置为智能配电网提高可观性和可控性提供了基础。研究了基于微型相量测量单元的配电网线路参数抗差辨识方法:针对配电网三相运行不对称的情况,构建了基于相分量描述的配电线路三相π型等值模型,结合微型相量测量单元... 微型相量测量单元装置为智能配电网提高可观性和可控性提供了基础。研究了基于微型相量测量单元的配电网线路参数抗差辨识方法:针对配电网三相运行不对称的情况,构建了基于相分量描述的配电线路三相π型等值模型,结合微型相量测量单元提供的多组线路两端电压、电流相量数据,提出了基于相分量模型的、适应配电网不对称运行的最小二乘线路参数辨识方法;并引入2种抗差方法,一种为基于Huber估计的抗差最小二乘法,另一种为基于中位数估计的抗差最小二乘法。在中性点经消弧线圈或小电阻接地系统中,所提方法仅需要线路两端的电压和电流相量即可在辨识线路相参数的同时获得线路正序和零序参数;在中性点不接地系统中,由于没有零序电流分量,当系统正常运行时所提方法可辨识线路正序参数。算例仿真验证了所提方法的有效性,并比较了2种抗差方法在辨识精度、计算耗时方面的优劣,结果表明,基于中位数估计的抗差最小二乘法的抗差性能更好,计算时间较短。 展开更多
关键词 配电线路 微型PMU 抗差参数辨识 相分量法 最小二乘法 Huber估计 中位数估计 中性点接地方式
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Synchrophasor-based real-time state estimation and situational awareness system for power system operation 被引量:3
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作者 Heng CHEN Lin ZHANG +1 位作者 Jianzhong MO kenneth e.martin 《Journal of Modern Power Systems and Clean Energy》 SCIE EI 2016年第3期370-382,共13页
State estimation is a critical functionality of energy management system(EMS) to provide power system states in real-time operations. However, problems such as failure to converge, prone to failure during contingencie... State estimation is a critical functionality of energy management system(EMS) to provide power system states in real-time operations. However, problems such as failure to converge, prone to failure during contingencies,and biased estimates while system is under stressed condition occur so that state estimation results may not be reliable.The unreliable results further impact downstream network and market applications, such as contingency analysis,voltage stability analysis, transient stability analysis, system alarming, and unit commitment. Thus, operators may lose the awareness of system condition in EMS. This paper proposes a fully independent and one-of-a-kind system by integrating linear state estimator into situational awareness applications based on real-time synchrophasor data. With guaranteed and accurate state estimation solution and advanced real-time data analytic and monitoring functionalities, the system is capable of assisting operators to assess and diagnose current system conditions for proactive and necessary corrective actions. The architecture, building components, and implementation of the proposed system are explored in detail. Two case studies with simulated data from the subsystems of Electric Reliability Council of Texas(ERCOT) and Los Angeles Department of Water and Power(LADWP) are presented. The test results show the effectiveness and reliability of the system, and its value for realtime power system operations. 展开更多
关键词 SYNCHROPHASOR Linear state estimator Situational awareness Power system operation
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