Fuzzy-expert approach for voltage-reactive power dispatch

D. Thukaram, G. Yesuratnam
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引用次数: 12

Abstract

The voltage stability control problem has become an important concern for utilities transmitting power over long distances. This paper presents an approach using fuzzy set theory for reactive power control with the purpose of improving the voltage stability of a power system. To minimize the voltage deviations from pre-desired values of all the load buses, using the sensitivities with respect to reactive power control variables form the basis of the proposed fuzzy logic control (FLC). Control variables considered are switchable VAr compensators, on load tap changing (OLTC) transformers and generator excitations. Voltage deviations and controlling variables are translated into fuzzy set notations to formulate the relation between voltage deviations and controlling ability of controlling devices. The developed fuzzy system is tested on a few simulated practical Indian power systems and some IEEE standard test systems. The performance of the fuzzy system is compared with conventional optimization technique and results obtained are encouraging. Results obtained for a 24-node equivalent EHV system of part of Indian southern grid and IEEE New England 39-bus system are presented for illustration purposes. The proposed fuzzy-expert technique is found suitable for on-line applications in energy control centre as the solution is obtained fast with significant speedups
电压无功调度的模糊专家方法
电压稳定控制问题已成为公用事业长距离输电的一个重要问题。本文提出了一种利用模糊集理论进行无功控制的方法,以提高电力系统的电压稳定性。为了使电压与所有负载母线的预期望值的偏差最小,使用相对于无功功率控制变量的灵敏度构成了所提出的模糊逻辑控制(FLC)的基础。考虑的控制变量包括可切换的无功补偿器、有载分接变换变压器和发电机励磁。将电压偏差与控制变量转化为模糊集符号,表示电压偏差与控制装置控制能力之间的关系。所开发的模糊系统在几个模拟的实际印度电力系统和一些IEEE标准测试系统上进行了测试。将模糊系统的性能与常规优化技术进行了比较,得到了令人鼓舞的结果。本文给出了印度南部电网部分24节点等效超高压系统和IEEE新英格兰39总线系统的计算结果。结果表明,所提出的模糊专家算法求解速度快,求解速度快,适合于能源控制中心的在线应用
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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