A Solution for Stability Improvement through Compressed Air Energy Storage as Reactive Power Compensating Device under Various Grid Faults

M. B. Hemanth Kumar, B. Saravanan
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引用次数: 1

Abstract

Grid stability can be improved by implementing various energy storage devices in the power system and among them one of the storage system is compressed air energy storage system (CAES). This CAES can be used for management of variation in the renewable energy and grid demand. The only drawback with CAES is that its cost is high compared with other storage technologies. The research is under development to operate CAES in an most efficient and economic way with maximum utilization of energy stored with least thermal losses. In this paper CAES is used for meeting the reactive power for the wind farm when it is subjected to fault at different bus locations. Here an doubly fed induction generator(DFIG) based wind turine(WT) with CAES performance shows better than static var compensator(SVC). This shows that CAES can be used as reactive power source for improving the system performance in the case of stability.
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利用压缩空气储能作为电网各种故障下无功补偿装置提高电网稳定性的解决方案
通过在电力系统中实施多种储能装置,可以提高电网的稳定性,其中一种储能装置是压缩空气储能系统(CAES)。该CAES可用于管理可再生能源和电网需求的变化。与其他存储技术相比,CAES的唯一缺点是成本高。该研究正在开发中,以最有效和最经济的方式运行CAES,最大限度地利用储存的能量,最小的热损失。本文将CAES用于满足风电场在不同母线位置发生故障时的无功功率。基于双馈感应发电机(DFIG)的风力发电机(WT)的CAES性能优于静态无功补偿器(SVC)。说明在稳定的情况下,CAES可以作为无功电源来改善系统的性能。
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