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Real-time voltage stability assessment using phasor measurement units: Influence of synchrophasor estimation algorithms

机译:使用量量值测量单元的实时电压稳定性评估:同步素估计算法的影响

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摘要

Power network operators are rapidly embracing the synchrophasor technology for real-time stability assessment due to its superiority over conventional supervisory control and data acquisition (SCADA) systems. Synchrophasor devices (i.e., phasor measurement units (PMUs)) are procured from different vendors to construct the wide-area measurment systems (WAMSs), and hence the PMUs from different vendors may be based on different synchrophasor estimation algorithms (SEAs). Although all synchrophasor devices comply with the IEEE synchrophasor standard, stability assessment using the phasor estimated via different synchrophasor device types may lead to different stability assessment outcomes. This paper investigates the effect of SEAs on real-time voltage stability evaluation. Three prominent synchrophasor algorithms, namely quadrature demodulation (QD), discrete Fourier transform (DFT), and phasor locked loop (PLL) algorithms are considered in this study. Real-time voltage stability was assessed using an enhanced Lyapunov exponent based algorithm. Enhancements to the Lyapunov exponent based real-time voltage stability assessment algorithm are proposed while considering practical implications. The New England (NE) 39 bus system is used as the test system, and PMUs are placed in the test system to achieve optimal observability by using an optimal PMU placement (OPP) algorithm. Simulation results show that each SEA detects the instability condition under different time-frames, while some SEAs could make false alarms under certain dynamic conditions. Therefore, a rigorous benchmark process should be mandated via standards to ensure a consistent stability assessment process from synchrophasor network.
机译:电力网络运营商正在快速接受同步稳定性评估的同步稳定性评估,因为其优于传统监督控制和数据采集(SCADA)系统。同步素设备(即,Phasor测量单位(PMU)从不同的供应商采购以构建广域测量系统(WAMS),因此来自不同供应商的PMU可以基于不同的同步验光算法算法(SEA)。尽管所有同步素设备符合IEEE同步素标准,但使用通过不同同步设备类型估计的相量的稳定性评估可能导致不同的稳定性评估结果。本文研究了海上对实时电压稳定性评价的影响。在本研究中考虑了三个突出的同步验光算法,即正交解调(QD),离散傅里叶变换(DFT)和相量锁定环(PLL)算法。使用增强的Lyapunov指数算法评估实时电压稳定性。在考虑实际意义的同时提出了基于Lyapunov指数的实时电压稳定性评估算法的增强。新英格兰(NE)39总线系统用作测试系统,并将PMU放置在测试系统中,通过使用最佳PMU放置(OPP)算法来实现最佳可观察性。仿真结果表明,每次海都在不同的时间框架下检测不稳定条件,而一些海洋可以在某些动态条件下进行误报。因此,应通过标准强制严格的基准过程,以确保来自同步素网络的一致稳定性评估过程。

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