Minimum information loss based state estimation for power systems

Hongbin Sun, F. Gao, Boming Zhang
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引用次数: 9

Abstract

The mathematical base of state estimation (SE) method for power systems is studied based on information theory. A more general SE method based on the minimum information loss (MIL) principle is proposed. The new method is suitable for different probability distributions of measurement errors, it can utilize different types of information including that of analog and digital measurements, and a unified estimation of power flow and network topology can be performed by it. It is proved that weighted least square (WLS) and weighted least absolute value (WLAV) estimation methods are both special cases of the MIL estimation. Based on the MIL method, it is concluded that large magnitude currents are the approximate condition of WLS estimations for current magnitude measurements commonly used in SE's for sub-transmission and distribution networks. A statistical study of a small test case and a numerical experiment in a real power network are carried out
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基于最小信息损失的电力系统状态估计
基于信息论,研究了电力系统状态估计方法的数学基础。提出了一种基于最小信息损失(MIL)原理的更通用的SE方法。该方法适用于测量误差的不同概率分布,可以利用不同类型的信息,包括模拟和数字测量信息,可以统一估计潮流和网络拓扑。证明了加权最小二乘(WLS)和加权最小绝对值(WLAV)估计方法都是MIL估计的特殊情况。基于MIL方法,得出了大量级电流是子输配网SE常用的电流测量的WLS估计的近似条件。对一个小型测试案例进行了统计研究,并在实际电网中进行了数值实验
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