Review on various voltage stability issues in AC distribution network

A. Khidrani, R. M. Larik, A. Memon, Irfan Ahmed Bajkani, S. H. Qazi
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Abstract

With the rapidly depleting natural energy resources and increasing population worldwide, the calls for more energy demand have risen globally. In this vein, the world is transitioning from traditional to renewable energy sources (RES) to meet the required demands. However, the (RES), due to its variable nature, has voltage stability and power quality issues that need to get minimized to enhance the reliability of the (RES) system. This paper reviews the voltage stability and quality issues in the AC distribution system based on renewable energy sources (RES). Initially the renewable energy sources and problems associated with renewable energy sources are discussed. This article gives an overview of voltage control strategies based on local as well as communication-based phenomenon for distribution networks. In this review a hybrid solar photovoltaic and wind system is used to generate the power of 3-5 kW. A voltage controller topology is suggested using MATLAB/Simulink for enhancing voltage stability of the system. It is suggested that a voltage stability controller can be designed using recommended topology by using Arduino with pulse width modulation technique. Thus, by measuring and correcting real-time voltage instability values of the system, the system can be made more reliably secure, efficient, and stable than the previously proposed renewable AC distribution systems.
回顾交流配电网中的各种电压稳定性问题
随着自然能源的迅速枯竭和全球人口的不断增长,全球对能源需求的呼声日益高涨。因此,全球正在从传统能源向可再生能源(RES)过渡,以满足需求。然而,由于可再生能源(RES)的可变性,其电压稳定性和电能质量问题需要最小化,以提高可再生能源(RES)系统的可靠性。本文综述了基于可再生能源(RES)的交流配电系统中的电压稳定性和电能质量问题。首先讨论了可再生能源以及与可再生能源相关的问题。本文概述了基于本地和基于通信现象的配电网络电压控制策略。在本综述中,太阳能光伏和风能混合系统的发电功率为 3-5 kW。使用 MATLAB/Simulink 提出了一种电压控制器拓扑结构,以增强系统的电压稳定性。建议使用 Arduino 和脉宽调制技术,利用推荐的拓扑结构设计电压稳定控制器。因此,通过测量和修正系统的实时电压不稳定性值,该系统可以比之前提出的可再生交流配电系统更加可靠、安全、高效和稳定。
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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