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Instability of a DC microgrid with constant power loads caused by modal proximity

机译:模态接近引起恒定功率负载的直流微电网的不稳定性

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This paper investigates stability of a DC microgrid with integrated constant power loads (CPLs). The investigation is based on an interconnected model of the DC microgrid with two subsystems. One subsystem consists of a CPL under examination and the other subsystem is constituted by remainder of DC microgrid (ROM). Analysis is carried out to indicate when an oscillation mode of CPL subsystem is in the proximity of an oscillation mode of ROM subsystem on complex plane, stability of the DC microgrid decreases as caused by the CPL, leading to growing oscillations in the DC microgrid in the worst case. Hence, the investigation reveals the mechanism about why the CPL may cause instability of DC microgrid from a new perspective of modal proximity. An index is proposed to detect the instability risk by applying the modal analysis to subsystems. The proposed application extends the merit of widely used frequency-domain analysis to the modal analysis, because instability danger can be detected by the proposed modal analysis in practice without having to establish parametric model of the DC microgrid. Two example DC microgrids with CPLs are presented to demonstrate and evaluate the analysis and conclusions made in the paper.
机译:本文研究具有集成恒定功率负载(CPL)的直流微电网的稳定性。该调查基于具有两个子系统的直流微电网的互连模型。一个子系统由正在检查的CPL组成,另一个子系统由其余的DC微电网(ROM)组成。进行分析以表明,当CPL子系统的振荡模式接近ROM子系统在复杂平面上的振荡模式时,由于CPL导致DC微电网的稳定性降低,导致DC微电网中的振荡增大。最糟糕的情况。因此,调查从新的模态接近性角度揭示了为什么CPL可能导致DC微电网不稳定的机理。提出了一种通过将模态分析应用于子系统来检测不稳定风险的指标。所提出的应用将广泛使用的频域分析的优点扩展到模态分析,因为在实践中可以通过所提出的模态分析来检测不稳定性危险,而无需建立直流微电网的参数模型。给出了两个带有CPL的DC微电网示例,以演示和评估本文所做的分析和结论。

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