An Estimation Method of Transmission Line Parameters Based on Measurements of Injection Power and Voltage Phasor in Power Grid

Yadong Zhou, Bowen Hu, Jiang Wu, Zhanbo Xu, X. Guan, Wei Chen, Ting Liu
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Abstract

Estimation of transmission line parameters is an important problem for state estimation of power grid. In recent years, some studies have shown that the transmission line parameters can be estimated by some specific measurement data of the power grid. However, most of the studies mainly focus on single type of measurement data. In this paper, we propose an estimation method of transmission line parameters based on multi-measurement data of power grid, including measurements of injection power and voltage phasor. And considering the different reliability of the measurements, we make different restrictions on the multi-measurements. In our method, parameters and connection topology of transmission lines are estimated separately, and an ALS optimization model is established to solve the problem. Compared to the previous methods, the objective functions and constraints of our optimization model are improved, with considering different constraints based on phasor measurements, to get better estimation accuracy. The effectiveness and performance of the developed estimation method are demonstrated based on experiments using IEEE 30-bus and 118-bus systems.
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基于电网注入功率和电压相量测量的输电线路参数估计方法
输电线路参数估计是电网状态估计中的一个重要问题。近年来,一些研究表明,输电线路参数可以通过电网的一些具体测量数据来估计。然而,大多数研究主要集中在单一类型的测量数据上。本文提出了一种基于电网注入功率和电压相量等多种测量数据的输电线路参数估计方法。考虑到测量值的信度不同,对多测量值进行了不同的约束。该方法分别对输电线路的参数和连接拓扑进行估计,并建立了一种ALS优化模型来解决该问题。与之前的方法相比,改进了优化模型的目标函数和约束条件,根据相量测量考虑了不同的约束条件,以获得更好的估计精度。基于IEEE 30总线和118总线系统的实验验证了该估计方法的有效性和性能。
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