Coordinated Load Flow Solution for Coupled Transmission-Distribution System Incorporating Load Modeling

Megha Gupta, A. Abhyankar
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引用次数: 4

Abstract

With the flow of time there is a rapid addition of distributed generation (DG) units in the distribution system (DS). This transformation of DS from passive to active network has made the examination of coupling between transmission and distribution (T&D) systems more significant. Conventionally, the load flow studies are performed individually for both transmission system (TS) and DS, presuming the other system as an equivalent. But to achieve a global solution for the entire power system, a Coordinated Load Flow (CLF) method is required. It will perform load flow in a distributed manner with a little reciprocity of information at the common bus, in order to reduce the computational complexities of solving large scale problems. This will allow to analyze the impact of detailed modeling of DS on global load flow solution which was otherwise neglected in traditional methods. This paper firstly presents the methodology to perform CLF. Further, the significance of CLF method is proved especially in the presence of voltage dependent loads in DS and its performance is compared with the solutions of independent T&D load flows. Numerical simulations are performed on various test cases and the results are validated using Newton-Raphson load flow method with optimal multiplier.
结合负荷建模的耦合输配电系统协调潮流解
随着时间的推移,配电系统中分布式发电机组的数量迅速增加。无源电网向有源电网的转变使得对输配电系统耦合的研究变得更加重要。传统上,对输电系统(TS)和输电系统(DS)分别进行潮流研究,假设另一个系统是等效的。但要实现整个电力系统的全局解决方案,需要一种协调潮流(CLF)方法。它将以分布式的方式执行负载流,在公共总线上有一点信息互易性,以减少解决大规模问题的计算复杂性。这将允许分析DS详细建模对全局潮流解的影响,否则在传统方法中被忽视。本文首先介绍了执行CLF的方法。进一步证明了CLF方法的重要性,特别是在直流系统中存在电压相关负载时,并将其性能与独立输配电潮流解进行了比较。在各种测试用例上进行了数值模拟,并采用最优乘子的牛顿-拉夫逊潮流法对结果进行了验证。
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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