Optimized Control and Power Sharing in Microgrid Network

M. S. Jouda, N. Kahraman
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引用次数: 4

Abstract

The synchronization and power-sharing among parallel inverters beside the voltage stability and frequency are important functions to be achieved in the microgrid. This paper investigates power sharing and controller is applied to limit voltage and frequency deviation. The voltage and frequency stability can be improved using a droop control with optimization technique for power (active and reactive) sharing of parallel distributed generation (DG) units. Where conventional droop control is not accurate share of output current and power among inverters. Therefore, particle swarm optimization (PSO) is a smart control strategy to reduce the frequency and voltage deviation, reduce the harmonic current, and it can accurately power sharing with elimination a mismatched among inverters or DG. The results of the control strategies are verified in simulation using Matlab/Simulink.
微电网优化控制与电力共享
除电压稳定和频率稳定外,并联逆变器之间的同步和功率共享是微电网需要实现的重要功能。本文研究了功率共享和控制器的应用,以限制电压和频率偏差。并联分布式发电(DG)机组的有功和无功功率共享采用下垂控制优化技术,可以提高电压和频率的稳定性。传统的下垂控制不准确的地方,输出电流和功率在逆变器之间的份额。因此,粒子群优化(PSO)是一种减少频率和电压偏差,减小谐波电流,消除逆变器或DG之间不匹配的精确功率共享的智能控制策略。通过Matlab/Simulink仿真验证了控制策略的效果。
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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