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Stability Enhancement Based on Virtual Impedance for DC Microgrids With Constant Power Loads

机译:基于虚拟阻抗的恒功率直流微电网稳定性提升

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摘要

In this paper, a converter-based dc microgrid is studied. By considering the impact of each component in dc microgrids on system stability, a multistage configuration is employed, which includes the source stage, interface converter stage between buses, and common load stage. In order to study the overall stability of the above dc microgrid with constant power loads (CPLs), a comprehensive small-signal model is derived by analyzing the interface converters in each stage. The instability issue induced by the CPLs is revealed by using the criteria of impedance matching. Meanwhile, virtual-impedance-based stabilizers are proposed in order to enhance the damping of dc microgrids with CPLs and guarantee the stable operation. Since droop control is commonly used to reach proper load power sharing in dc microgrids, its impact is taken into account when testing the proposed stabilizers. By using the proposed stabilizers, virtual impedances are employed in the output filters of the interface converters in the second stage of the multistage configuration. In particular, one of the virtual impedances is connected in series with the filter capacitor, and the other one is connected at the output path of the converter. It can be seen that by using the proposed stabilizers, the unstable poles induced by the CPLs are forced to move into the stable region. The proposed method is verified by the MATLAB/Simulink model of multistage dc microgrids with three distributed power generation units.
机译:本文研究了一种基于变换器的直流微电网。通过考虑直流微电网中每个组件对系统稳定性的影响,采用了多级配置,其中包括源级,总线之间的接口转换器级和公共负载级。为了研究具有恒定功率负载(CPL)的上述直流微电网的整体稳定性,通过分析每个阶段的接口转换器,得出了一个综合的小信号模型。通过使用阻抗匹配标准可以揭示由CPL引起的不稳定性问题。同时,提出了基于虚拟阻抗的稳定器,以增强CPL对直流微电网的阻尼并确保其稳定运行。由于下垂控制通常用于在直流微电网中达到适当的负载功率分配,因此在测试建议的稳定器时应考虑其影响。通过使用提出的稳定器,在多级配置的第二级中,在接口转换器的输出滤波器中采用了虚拟阻抗。特别地,虚拟阻抗之一与滤波电容器串联连接,另一虚拟阻抗在转换器的输出路径上连接。可以看出,通过使用提出的稳定器,由CPL引起的不稳定磁极被迫移入稳定区域。具有三个分布式发电单元的多级直流微电网的MATLAB / Simulink模型验证了该方法的有效性。

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