Voltage regulation using three phase electric spring by fuzzy logic controller

A. Ikhe, Y. Pahariya
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引用次数: 1

Abstract

Introduction. The renewable energy sources such as solar and wind power have increased significantly in recent years. However, as the generation of renewable energy has become more integrated, its intermission and instability have a major impact on the power system’s stability, such as voltage instability and frequency flicker. Purpose. In order to address the different power quality issues brought on by intermittent and unreliable renewable energy sources, electric spring offers a novel solution. It was proposed as a technique for regulating load and adjusting output power. For the integration of electric springs with noncritical loads, a contemporary control mechanism is described in this paper. Novelty. The suggested work is innovative in that it presents an improved control technique that efficiently maintains voltage stability as voltage changes. Method. The proposed technique is based on an analysis of the initial conditions and input data for developing fuzzy rules for calculating compensating voltages in relation to the difficulties. Results. This suggested fuzzy controller will be able to maintain the regular operation of the electric spring of power output control stability as well as continuing to provide power factor improvement and voltage control for significant loads, including the home’s protection system. Practical value. A detailed study of typical voltage regulation is undertaken, supported by simulation results, to demonstrate the effectiveness of the applied control scheme in cancelling the corresponding issues with power quality.
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采用模糊控制器对三相电弹簧进行电压调节
介绍。近年来,太阳能、风能等可再生能源有了显著增长。然而,随着可再生能源发电的集成化程度越来越高,其间歇性和不稳定性对电力系统的稳定性产生了重大影响,如电压不稳定和频闪等。目的。为了解决间歇性和不可靠的可再生能源带来的不同电能质量问题,电弹簧提供了一种新颖的解决方案。它是一种调节负载和调节输出功率的技术。针对非临界载荷电弹簧的集成问题,本文提出了一种现代控制机制。新鲜事物。建议的工作是创新的,因为它提出了一种改进的控制技术,可以有效地保持电压变化时的电压稳定性。方法。提出的技术是基于对初始条件和输入数据的分析,为计算与困难相关的补偿电压制定模糊规则。结果。这表明模糊控制器将能够保持电力输出控制稳定的电弹簧的正常运行,并继续为包括家庭保护系统在内的重要负载提供功率因数改善和电压控制。实用价值。对典型的电压调节进行了详细的研究,并辅以仿真结果,以证明所应用的控制方案在消除相应的电能质量问题方面的有效性。
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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