基于自适应机制的Salp群最优下垂控制设计

Mohamed A. Ebrahim, Reham M. Abdel Fattah, Ebtisam M. Saied, Samir M. Abdel Maksoud, H. El Khashab
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引用次数: 1

摘要

为了满足日益增长的电力需求,需要各分布式发电机组之间的协作。为了使并网逆变器实现微网负荷分担,人们开发了几种控制策略。其中,下垂控制方法由于缺乏并联逆变器之间重要的通信链路来控制微电网内DG机组,因此被研究界广泛接受。为了解决孤岛微电网系统的电力共享问题,在孤岛微电网系统中保持频率和电压约束。因此,必须使用优化技术精确地选择参数值。优化技术是研究人员关注的热点;为此,本文采用海藻群算法(SSIA)对孤岛期间的微电网下垂控制进行了研究。为了在孤岛过程中获得更好的微电网输出反应,采用基于ssia的下垂控制来优化确定PI增益和下垂控制系数。仿真结果表明,基于ssia的下垂控制能够保证微网孤岛模式在负荷变化时保持频率和电压约束的极限和偏差,实现适当的功率共享,从而控制微网的电能质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Salp Swarm Optimization with Self-Adaptive Mechanism for Optimal Droop Control Design
The collaboration of the various distributed generation (DG) units is required to meet the increasing electricity demand. To run parallel-connected inverters for microgrid load sharing, several control strategies have been developed. Among these methods, the droop control method was widely accepted in the research community due to the lack of important communication links between parallel-connected inverters to control the DG units within a microgrid. To help to solve the power-sharing process, keep to frequency and voltage constrained limits in islanded mode microgrid system. The parameter values must therefore be chosen accurately by using the optimization technique. Optimization techniques are a hot topic of researchers; hence This paper discusses the microgrid droop controller during islanding using the salp swarm inspired algorithm (SSIA). To obtain a better fine microgrid output reaction during islanding, SSIA-based droop control is used to optimally determine the PI gain and the coefficients of the prolapse control. The results of the simulation show that the SSIA-based droop control can control the power quality of the microgrid by ensuring that the keep to frequency and voltage constrained limits and deviation and proper power-sharing occurs during the microgrid island mode during a load change.
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