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A Distributed Control Method Based on a Voltage Sensitivity Matrix in DC Microgrids With Low-Speed Communication

机译:基于电压灵敏度矩阵的直流微电网低速通信分布式控制方法

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摘要

A distributed control method is proposed to improve the power sharing performance of bidirectional distributed generators (BDGs) and the voltage regulation performance of a dc bus in a dc microgrid (MG). To analyze the structural characteristics of a dc MG, voltage sensitivity analysis based on power flow analysis is presented. Based on this, a distributed control method using a voltage sensitivity matrix is proposed. The proposed method uses information received through the communication line and performs the droop gain variation method and voltage shifting method without additional controllers. This approach achieves improved power sharing and voltage regulation performance without output transient states, even at slow communication speed. The proposed method is implemented through an experimental environment consisting of two BDGs, a load, and a non-dispatchable distributed generator in a four-bus ring type model. The experimental results demonstrate improved power sharing accuracy and voltage regulation performance.
机译:提出了一种分布式控制方法,以提高双向分布式发电机(BDG)的功率共享性能和直流微电网(MG)中直流总线的调压性能。为了分析直流MG的结构特性,提出了基于潮流分析的电压灵敏度分析方法。基于此,提出了一种使用电压灵敏度矩阵的分布式控制方法。所提出的方法使用通过通信线路接收的信息,并且在没有附加控制器的情况下执行下垂增益变化方法和电压移位方法。即使在通信速度较慢的情况下,这种方法也可以改善功率共享和电压调节性能,而无需输出瞬态。该方法是通过在四总线环型模型中由两个BDG,一个负载和一个不可分派的分布式发电机组成的实验环境中实现的。实验结果证明了改进的功率共享精度和电压调节性能。

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