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Eigenvalue-based harmonic stability analysis method in inverter-fed power systems

机译:基于特征值的逆变电源系统谐波稳定性分析方法

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摘要

This paper presents an eigenvalue-based harmonic stability analysis method for inverter-fed power systems. A full-order small-signal model for a droop-controlled Distributed Generation (DG) inverter is built first, including the time delay of digital control system, inner current and voltage control loops, and outer droop-based power control loop. Based on the inverter model, an overall small-signal model of a two-inverter-fed system is then established, and the eigenvalue-based stability analysis is subsequently performed to assess the influence of controller parameters on the harmonic resonance and instability in the power system. Eigenvalues associated with time delay of inverter and inner controller parameters is obtained, which shows the time delay has an important effect on harmonic instability of inverter-fed power systems. Simulation results are given for validating the proposed harmonic stability analysis method.
机译:本文提出了一种基于特征值的逆变器供电系统谐波稳定性分析方法。首先建立了用于下垂控制的分布式发电(DG)逆变器的全阶小信号模型,包括数字控制系统的时间延迟,内部电流和电压控制回路以及基于外部下垂的功率控制回路。基于逆变器模型,然后建立一个两逆变器馈电系统的整体小信号模型,然后进行基于特征值的稳定性分析,以评估控制器参数对谐波谐振和电源不稳定的影响。系统。获得了与逆变器的时延和内部控制器参数相关的特征值,表明该时延对逆变器供电系统的谐波不稳定性具有重要影响。仿真结果验证了所提出的谐波稳定性分析方法的有效性。

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