Power system state estimation using wire temperature measurements for model accuracy enhancement

M. Wydra, P. Kacejko
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引用次数: 9

Abstract

Power system state estimation is a process of real-time online modeling of an electric power system. The estimation is performed with the application of a static model of the system and actual measurements of electrical quantities that are encumbered with error. Usually, a model of the estimated system is also encumbered with uncertainty, especially power line resistances that depend on the temperature of conductors. Presently, a considerable development of technologies for dynamic power line rating can be observed. Typically, devices for dynamic line rating are installed directly on the conductors and measure basic electric parameters such as current and voltage as well as non-electric ones as surface temperature of conductors, their expansion, stress or the conductor sag angle relative to the plumb line. The objective of this article is to present a method for power system state estimation that uses temperature measurements of overhead line conductors as supplementary measurements that enhance quality of the model and thereby the estimation accuracy. Power system state estimation is presented together with a method for using temperature measurements of power line conductors for updating the static power system model in the state estimation process. Results obtained with the application of that method have been analyzed based on the estimation calculations performed for an example system with and without taking into account the conductor temperature measurements. The final part of the article includes conclusions and suggestions for the further research work.
利用导线温度测量提高模型精度的电力系统状态估计
电力系统状态估计是对电力系统进行实时在线建模的过程。估计是通过应用系统的静态模型和实际测量的电量来完成的,这些电量是有误差的。通常,估计系统的模型也具有不确定性,特别是取决于导体温度的电力线电阻。目前,动态电力线额定技术有了长足的发展。通常,动态线路额定值装置直接安装在导体上,测量电流、电压等基本电参数以及导体表面温度、膨胀、应力或导体相对于铅垂线的垂角等非电参数。本文的目的是提出一种电力系统状态估计方法,该方法使用架空线路导线的温度测量作为补充测量,以提高模型的质量,从而提高估计精度。提出了电力系统状态估计,并提出了一种在状态估计过程中利用电力线导体温度测量值对电力系统静态模型进行更新的方法。根据考虑和不考虑导体温度测量的实例系统的估计计算,分析了应用该方法得到的结果。文章的最后部分是结论和对进一步研究工作的建议。
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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