POWER SYSTEM STATE ESTIMATION USING A ROBUST ESTIMATOR

Z. Khan, Katrina Lane Krebs, Sarfaraz Ahmad, Misbah Munawar
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Abstract

State estimation (SE) is a primary data processing algorithm which is utilised by the control centres of advanced power systems. The most generally utilised state estimator is based on the weighted least squares (WLS) approach which is ineffective in addressing gross errors of input data of state estimator. This paper presents an innovative robust estimator for SE environments to overcome the non-robustness of the WLS estimator. The suggested approach not only includes the similar functioning of the customary loss function of WLS but also reflects loss function built on the modified WLS (MWLS) estimator. The performance of the proposed estimator was assessed based on its ability to decrease the impacts of gross errors on the estimation results. The properties of the suggested state estimator were investigated and robustness of the estimator was studied considering the influence function. The effectiveness of the proposed estimator was demonstrated with the help of examples which also indicated non-robustness of MWLS estimator in SE algorithm.
基于鲁棒估计器的电力系统状态估计
状态估计(SE)是先进电力系统控制中心常用的一种主要数据处理算法。最常用的状态估计器是基于加权最小二乘(WLS)的方法,该方法在处理状态估计器输入数据的粗误差方面是无效的。本文提出了一种创新的面向SE环境的鲁棒估计器,克服了WLS估计器的非鲁棒性。所提出的方法不仅包含了WLS习惯损失函数的类似功能,而且反映了基于改进WLS (MWLS)估计量构建的损失函数。该估计器的性能是根据其减少粗误差对估计结果的影响的能力来评估的。研究了所提状态估计器的性质,并考虑了影响函数对估计器的鲁棒性进行了研究。通过算例验证了该估计器的有效性,同时也说明了在SE算法中MWLS估计器的非鲁棒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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