智能利用潜在无功资源的电压调节

H. Kazari, A. A. Fard, A. S. Dobakhshari, A. Ranjbar
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引用次数: 1

摘要

需求响应概念的引入,以及基于可再生能源的分布式发电(DG)渗透率的增加,为新型控制方案在智能电网框架下的电力系统集成提供了机会。电力系统的电压控制方法需要在无功资源和常规电压/无功控制设备之间进行合理的协调。本文通过对潜在无功资源的研究,采用集中控制方案优化可再生DG机组和可控负荷的无功输出以及常规电压控制器的运行。考虑到需求和发电的可变性,控制器将使配电网中的电压变化最小化。采用遗传算法对配电网运行进行优化。该方法在一个14母线配电网上进行了实际应用,结果表明不同母线的电压分布得到了改善。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Voltage Regulation through Smart Utilization of Potential Reactive Power Resources
The introduction of demand response concept, in addition to increment of penetration of distributed generation (DG) based on renewable energies, make opportunities for the novel control schemes to be integrated in power system on a smart grid framework. Voltage control methods in power systems needs proper coordination among reactive power resources and conventional volt/var control equipments. In this work, potential reactive power resources are investigated and then, reactive power output of renewable DG units and controllable loads along with operation of conventional voltage controllers are optimized using a centralized control scheme. Considering the variability of demand and generation, the controller would minimize voltage variations in distribution network. The operation of distribution network is optimized using genetic algorithm (GA). The method is implemented on a sample 14-bus distribution network and the results show the improvement of voltage profile of different buses.
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