Control of microgrids with distributed energy storage operating in Islanded mode

Chu Sun, G. Joós, F. Bouffard
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引用次数: 8

Abstract

For microgrids with multiple distributed energy storage units (ESU) operating in islanded mode, it is important to maintain desirable frequency and voltage performance while avoiding over-degradation of certain ESU. In this paper, a control strategy with State-of-Charge (SoC) balancing capability and improved dynamic performance is proposed. The washout-filter based power sharing gets rid of secondary control needed for voltage and frequency deviation due to conventional droop control. The SoC balancing is realized by adjusting the power reference instead of modifying the droop slope, so desirable frequency performance can be maintained. The transient virtual resistance (TVR) can increase damping of the system without introducing voltage deviation in steady state. Parameters of the washout filter, TVR and SoC balancing control are tuned based on small-signal analysis of the reduced model of microgrids. The proposed control strategy is verified with Matlab/Simulink simulation.
孤岛模式下分布式储能微电网的控制
对于具有多个孤岛运行模式的分布式储能单元(ESU)的微电网来说,在保持理想的频率和电压性能的同时避免某些ESU的过度退化是非常重要的。本文提出了一种具有荷电状态平衡能力和改进动态性能的控制策略。基于冲洗滤波器的功率共享,消除了传统下垂控制中电压和频率偏差所需要的二次控制。SoC平衡是通过调整功率基准来实现的,而不是通过修改下垂斜率来实现,因此可以保持理想的频率性能。暂态虚电阻(TVR)可以在不引入稳态电压偏差的情况下增加系统的阻尼。在对微电网简化模型进行小信号分析的基础上,对冲刷滤波器、TVR和SoC平衡控制参数进行了调整。通过Matlab/Simulink仿真验证了所提出的控制策略。
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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