A Distributed Control Strategy with Fractional Order PI Controller for DC Microgrid

Mehdi Doostinia, Mohammad T. H. Beheshti, S. A. Alavi
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引用次数: 4

Abstract

This paper presents a novel distributed consensus control strategy for stabilization of the buses voltages and energy balancing of the storage in DC microgrids. The proposed strategy works based on sparse communication graph in which the agents possess fractional order proportional integral (FOPI) dynamics. The FOPI controller is used for energy balancing energy storage (ES) systems and to regulate the average DC microgrid buses voltages. The proposed control strategy operates in both operation modes of DC microgrid: 1) islanded mode, −2) grid connected mode. In both modes the average voltage of DC microgrid converges to the microgrid desire reference voltage. The energy storages systems are controlled independently of the operating mode to achieve and maintain a balanced energy level. The simulation results demonstrate the performance of the control strategy in a case study of a 10 bus 380 V DC with intermittent photovoltaic generation.
基于分数阶PI控制器的直流微电网分布式控制策略
针对直流微电网中母线电压稳定和储能能量平衡问题,提出了一种新的分布式共识控制策略。该策略基于稀疏通信图,agent具有分数阶比例积分(FOPI)动态。FOPI控制器用于能量平衡储能系统和调节直流微电网母线的平均电压。所提出的控制策略适用于直流微电网的两种运行模式:1)孤岛模式,−2)并网模式。在这两种模式下,直流微电网的平均电压都收敛于微电网所需参考电压。储能系统的控制独立于运行模式,以达到并保持平衡的能量水平。仿真结果表明了该控制策略的有效性,并以10母线380 V直流间歇光伏发电为例进行了验证。
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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