Design and quasi-equilibrium analysis of a distributed frequency-restoration controller for inverter-based microgrids

N. Ainsworth, S. Grijalva
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引用次数: 16

Abstract

This paper discusses a proposed frequency-restoration controller which operates as an outer loop to frequency droop for voltage-source inverters. By quasi-equilibrium analysis, we show that the proposed controller is able to provide arbitrarily small steady-state frequency error while maintaing power sharing between inverters without need for communication or centralized control. We derive rate of convergence, discuss design considerations (including a fundamental trade-off that must be made in design), present a design procedure to meet a maximum frequency error requirement, and show simulation results verifying our analysis and design method. The proposed controller will allow flexible plug-and-play inverter-based networks to meet a specified maximum frequency error requirement.
基于逆变器的微电网分布式频率恢复控制器设计与准平衡分析
本文讨论了一种频率恢复控制器,它作为电压源型逆变器的频率下降外环。通过准平衡分析,我们表明所提出的控制器能够提供任意小的稳态频率误差,同时保持逆变器之间的功率共享,而无需通信或集中控制。我们推导了收敛速度,讨论了设计考虑因素(包括设计中必须做出的基本权衡),提出了满足最大频率误差要求的设计过程,并展示了验证我们的分析和设计方法的仿真结果。所提出的控制器将允许灵活的即插即用逆变器网络,以满足指定的最大频率误差要求。
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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