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首页> 外文期刊>Journal of Modern Power Systems and Clean Energy >Parametric Problems in Power System Analysis: Recent Applications of Polynomial Approximation Based on Galerkin Method
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Parametric Problems in Power System Analysis: Recent Applications of Polynomial Approximation Based on Galerkin Method

机译:电力系统分析中的参数问题:基于Galerkin方法的多项式近似的最近应用

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摘要

In power systems, there are many uncertainty factors such as power outputs of distributed generations and fluctuations of loads. It is very beneficial to power system analysis to acquire an explicit function describing the relationship between these factors (namely parameters) and power system states (or performances). This problem, termed as parametric problem (PP) in this paper, can be solved by Galerkin method, which is a powerful and mathematically rigorous method aiming to seek an accurate explicit approximate function by projection techniques. This paper provides a review of the applications of polynomial approximation based on Galerkin method in power system PPs as well as stochastic problems. First, the fundamentals of polynomial approximation and Galerkin method are introduced. Then, the process of solving three types of typical PPs by polynomial approximation based on Galerkin method is elaborated. Finally, some application examples as well as several potential applications of power system PPs solved by Galerkin method are presented, namely the probabilistic power flow, approximation of static voltage stability region boundary, and parametric time-domain dynamic simulation.
机译:在电力系统中,存在许多不确定性因素,例如分布代的电源输出和负载波动。电力系统分析是非常有益的,以获取描述这些因素(即参数)和电力系统状态(或表演)之间关系的显式功能。本文中的这个问题被称为参数问题(PP),可以通过Galerkin方法解决,这是一种强大而在数学上严格的方法,其目的是通过投影技术寻求准确的明确近似功能。本文介绍了基于Galerkin方法在电力系统PPS中的多项式近似的应用以及随机问题。首先,介绍了多项式近似和Galerkin方法的基础。然后,阐述了基于Galerkin方法的多项式近似求解三种类型PP的过程。最后,提出了一些应用示例以及通过Galerkin方法解决的电力系统PPS的几个潜在应用,即概率功率流,静态电压稳定区域边界的近似,以及参数域动态模拟。

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