A Fast Technique of Voltage Stability Analysis and Optimization in the Grid Network

M. Kowsalya, K. K. Ray, D. Kothari, Abhishek Kumar, Aurav Ghai
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引用次数: 2

Abstract

The relative positions of the bus voltage phasors in the voltage space of a system depend on the characteristics of and the power flow in, the transmission network. When the voltage space of the system is examined with respect to the "centroid" of the system voltage space, it is possible to identify the loadability of buses and rank them accordingly. A technique based on concepts applied to equilibrium analysis of rigid bodies is developed to determine the centroid voltage of the system voltage space and centroid voltage of the generator voltage space. The relative positions of the bus voltage phasors with respect to the centroid voltage of the system voltage space and centroid voltage of the generator voltage space are used to identify and compute a voltage stability index for the load buses in the system. The developed index [C2] is optimized using particle swarm optimization (PSO) and differential evolution algorithm (DE). The algorithm minimizes the voltage stability index of all the load buses to improve the static voltage stability margin.
一种快速的电网电压稳定分析与优化技术
系统电压空间中母线电压相量的相对位置取决于输电网的特性和输电网中的潮流。当系统的电压空间相对于系统电压空间的“质心”进行检查时,就有可能确定母线的可负载性并相应地对它们进行排序。基于刚体平衡分析的概念,提出了一种确定系统电压空间质心电压和发电机电压空间质心电压的方法。母线电压相量相对于系统电压空间的质心电压和发电机电压空间的质心电压的相对位置被用来识别和计算系统中负载母线的电压稳定指标。利用粒子群算法(PSO)和差分进化算法(DE)对指标[C2]进行了优化。该算法通过最小化各负载母线的电压稳定指标来提高静态电压稳定裕度。
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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