加权最小二乘方法提供的同步量测量性能

D. Belega, D. Petri
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引用次数: 10

摘要

本文分析了基于余弦窗的加权最小二乘(WLS)算法提供的同步相量估计器在稳态、动态和瞬态条件下的性能。考虑了两个、三个和四个周期的观测间隔长度。具体来说,稳态精度是通过考虑非标称频率偏移和谐波的影响来评估的。相反,动态条件被建模为正弦振幅和/或相位调制,或线性频率斜坡。根据IEEE电力系统同步相量标准C37.118.1-2011,采用总矢量误差(Total Vector Error, TVE)作为精度参数,并将得到的结果与标准中规定的P级或m级符合性的最大允制值进行比较。最后,分析了估计器对幅度阶跃和相位阶跃的响应时间。所取得的结果允许对WLS同步相量估计器的性能进行全面评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance of synchrophasor measurements provided by the Weighted Least Squares approach
In this paper the performances of the synchrophasor estimators provided by the Weighted Least Squares (WLS) algorithm based on the cosine windows are analyzed under steady-state, dynamic, and transient conditions. Two-, three-, and four-cycle observation interval lengths are considered. Specifically, steady-state accuracy is assessed by considering the effect of both off-nominal frequency offsets and harmonics. Conversely, dynamic conditions are modeled as sinusoidal amplitude and/or phase modulations, or linear frequency ramps. According to the IEEE Standard C37.118.1-2011 about synchrophasors for power systems, the Total Vector Error (TVE) is employed as accuracy parameter and the achieved results are compared with the maximum allowed values specified in the Standard for P- or M-class compliance. Finally, estimator response time to amplitude or phase steps is analyzed. The achieved results allow an overall assessment of the WLS synchrophasor estimator performances.
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