A brief review on hardware structure of AC electric spring

Jyoti Rokde, A. Thosar
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Abstract

Decarbonizing power generation and reducing greenhouse gas emissions require renewable energy sources. Intermittent nature of renewable energy sources can cause blackouts, fluctuation in voltage, grid-connected inverter usage, inability to predict power generation, fluctuations in voltage and frequency. It is possible to balance between the supply and demand of power to overcome these problems by using an electric spring (ES). It is necessary to study its work, types, and controlling actions for realizing the benefits of the electric spring. This paper reviews the hardware structure of an ES based on voltage-source inverter (VSI) and current-source inverter (CSI) topologies, in single-phase and three-phase AC power distribution systems with renewable energy sources. The structure, control strategies, operating modes, advantages and disadvantages of each ES topology are elaborated to make it a suitable alternative for resolving different power quality issues caused due to the high penetration of renewable energy sources.
交流电动弹簧硬件结构综述
脱碳发电和减少温室气体排放需要可再生能源。可再生能源的间歇性会导致停电、电压波动、并网逆变器的使用、无法预测发电量、电压和频率波动。通过使用电弹簧(ES),可以平衡电力的供应和需求,从而克服这些问题。为了实现电动弹簧的效益,有必要对其工作、类型和控制动作进行研究。本文综述了基于电压源逆变器(VSI)和电流源逆变器(CSI)拓扑的可再生能源单相和三相交流配电系统ES的硬件结构。阐述了每种ES拓扑的结构、控制策略、运行模式、优缺点,以使其成为解决由于可再生能源的高渗透率而导致的不同电能质量问题的合适选择。
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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