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Stability Analysis and Stability Enhancement Based on Virtual Harmonic Resistance for Meshed DC Distributed Power Systems with Constant Power Loads

机译:恒功率负载的网状直流分布式电源系统基于虚拟谐波电阻的稳定性分析和稳定性增强

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This paper addresses the stability issue of the meshed DC distributed power systems (DPS) with constant power loads (CPLs) and proposes a stability enhancement method based on virtual harmonic resistance. In previous researches, the network dynamics of the meshed DC DPS are often ignored, which affects the derivation of the equivalent system impendence. In addition, few of them have considered the meshed DC DPS including multiple sources with voltage-controlled converters and CPLs. To tackle the aforementioned challenge, this paper mainly makes the following efforts. The component connection method (CCM) is employed and expanded to derive the stability criterion of the meshed DC DPS with CPLs. This stability criterion can be simplified to relate only with the network node admittance matrix, the output impendences of the sources, and the input admittances of the CPLs. A virtual harmonic resistance through the second-order generalized integrator (SOGI) is added in the source with the voltage-controlled converter to lower the peak of the source output impendence, which can enhance the stability of the meshed DC DPS. The effectiveness of the proposed stability criterion and stability enhancement method are verified by nonlinear dynamic simulations.
机译:本文讨论了具有恒定功率负载(CPL)的网状DC分布式电源系统(DPS)的稳定性问题,并提出了一种基于虚拟谐波电阻的稳定性增强方法。在以前的研究中,网状DC DPS的网络动力学经常被忽略,这影响了等效系统阻抗的推导。此外,他们中很少有人考虑网状DC DPS,包括带有压控转换器和CPL的多个电源。为了克服上述挑战,本文主要进行以下工作。采用并扩展了组件连接方法(CCM),以推导带有CPL的网状DC DPS的稳定性判据。可以简化此稳定性标准,使其仅与网络节点导纳矩阵,源的输出阻抗和CPL的输入导纳有关。通过二阶通用积分器(SOGI)将虚拟谐波电阻与压控转换器一起添加到源中,以降低源输出阻抗的峰值,这可以增强网状DC DPS的稳定性。通过非线性动力学仿真验证了所提出的稳定性判据和稳定性增强方法的有效性。

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