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Improved Synchrophasor Models for Power System Dynamic Stability Evaluation Based on IEEE C37.118.1 Reference Architecture

机译:基于IEEE C37.118.1参考架构的改进的同步相量模型用于电力系统动态稳定性评估

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Synchrophasors are an emerging power system wide-area dynamic performance monitoring and control technology. The IEEE standard C37.118.1 outlines specifications for the construction of synchrophasor units, in which two reference synchrophasor models are proposed for protection (P-type) and measurement (M-type) purposes. This paper develops improved synchrophasor models for power system dynamic stability/performance evaluation based on the reference architecture proposed in the IEEE standard C37.118.1, considering frequency error (FE) and the total vector error (TVE) as the main performance indices. The quadrature demodulation filters are designed explicitly considering the impact of harmonic distortion and out-of-band interference, and thus optimized quadrature demodulation filters improve estimation performance during adverse conditions. Furthermore, a special emphasis is placed on the input low-pass filter to attenuate high-frequency components above the Nyquist rate. The improved synchrophasor models are rigorously tested to ensure compliance with performance requirements stipulated in the IEEE standard. Results show that improved synchrophasor models significantly enhance the FE while ensuring compliance requirements for the TVE.
机译:同步相量是一种新兴的电力系统广域动态性能监控技术。 IEEE标准C37.118.1概述了同步相量单元构造的规范,其中提出了两个参考同步相量模型用于保护(P型)和测量(M型)目的。本文基于IEEE标准C37.118.1中提出的参考体系结构,开发了改进的同步相量模型,用于电力系统动态稳定性/性能评估,并将频率误差(FE)和总矢量误差(TVE)作为主要性能指标。正交解调滤波器的设计明确考虑了谐波失真和带外干扰的影响,因此优化的正交解调滤波器可改善不利条件下的估计性能。此外,还特别强调输入低通滤波器,以衰减高于奈奎斯特速率的高频分量。改进的同步相量模型经过严格测试,以确保符合IEEE标准中规定的性能要求。结果表明,改进的同步相量模型可显着增强FE,同时确保TVE的合规性要求。

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