基于防御方案机制的变电站变频电池储能系统

Z. Arifin, Aditya Firmanto
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引用次数: 1

摘要

蓄电池储能系统的安装一般是为了提高电网系统的可靠性,增加各种能源资源向电网的整合,实现发电供应与负荷需求的匹配,使电力运行系统更加稳定可靠。在电网中,BESS对某些干扰引起的电网频率调节具有快速响应能力。为了应对这种干扰,电力公司采用了一种对抗方案机制,以防止由于频率的快速变化而导致电网暂时停电。本文研究了电池储能系统作为频率控制器与高压电网防御方案相结合的作用。通过软件建模,对变电站电池储能系统的一些防御方案指标进行了评估。结果表明,变电所电池储能系统可以通过这种频率调节来提高电网的可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Battery Energy Storage System as Frequency Control at Substation based on Defense Scheme Mechanism
Battery Energy Storage System is generally installed to improve reliability in the power grid system, to increase the integration of various energy resources to the grid and to match between power generation supply and load demand in order to enable power operating system more stable and reliable. In power system network, BESS has ability to do a quick response for regulating the grid frequency caused by some interferences. For dealing with such interferences the utilities have applied a defiance scheme mechanism to prevent the gird blackout due to a rapid change of the frequency for a while. This study investigates the role of Battery Energy Storage System as a frequency controller combining with the defense scheme at the high voltage network. Some defense Scheme indicators within Battery Energy Storage System at a substation has been assessed through a software modelling. The results show that Battery Energy Storage System at Substation is able to increase the reliability of grid by such frequency regulation.
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