大型电池储能并网光伏系统事件触发分布式协调电压控制策略

Nasif Mahmud, A. Zahedi, Md. Shamiur Rahman
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引用次数: 9

摘要

本文解决了太阳能光伏高渗透导致的低压配电网馈线电压调节问题。本文提出了一种事件触发分布式电压控制策略,并对其性能进行了评价,以使国产低压拨号馈线的母线电压控制在允许范围内。提出了一种通过馈线控制母线电压的先导-跟随分布式控制策略,该策略对任何母线电压阶都具有鲁棒性。这种领导者跟随分布式控制只需要与直接相邻的总线通信来实现分布式电压控制。针对相邻电池储能系统之间的数据传输,提出了一种事件触发通信方案,以减少通信量。在MATLAB/ Simulink环境下,对该控制器的性能进行了评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An event-triggered distributed coordinated voltage control strategy for large grid-tied PV system with battery energy storage
In this paper, the feeder voltage regulation problem of low-voltage distribution network due to high penetration of solar PVs has been addressed. This paper proposes and evaluates the performance of an event-triggered distributed voltage control strategy to regulate the bus voltages within allowable limit in a domestic low-voltage redial feeder. A leader-following distributed control strategy has been proposed to control the bus voltages through the feeder, which is robust to any bus voltage order. This leader-following distributed control requires communicating only with immediate adjacent buses to implement the distributed voltage control. An event-triggered communication scheme has been introduced for the data transmission between adjacent battery energy storage systems (BESSs) to reduce the amount of communication. The performance of the proposed controller has been evaluated in a realistic radial distribution feeder in MATLAB/ Simulink environment.
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