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Harmonic Resonance Investigation of a Multi-Inverter Grid-Connected System Using Resonance Modal Analysis

机译:基于谐振模态分析的多逆变器并网系统谐波谐振研究

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This paper addresses the resonance problem in a parallel-inverter-based grid-connected system. Harmonic interactions between inverters and the grid exhibit various number of complicated characteristics that threatens the system stability and power quality. In this paper, a method of harmonic resonance analysis is proposed to investigate the resonance problem in a multi-inverter grid-connected system based on resonance modal analysis (RMA) and participation factor (PF) calculations. Initially, an impedance-based analytical approach is employed and expanded to an electricity distribution network that is dominated by multiple inverters with LCL filters and proportional resonant controllers. Then, the RMA is introduced to investigate the resonant interactions among inverters and the grid. Specifically, harmonic resonance characteristics are addressed through transfer functions and the proposed method considering variation of inverter number, different inverter combinations, and critical system components. Finally, time domain simulations on the PSCAD/EMTDC platform are presented. The case study results validate the effectiveness of the proposed method.
机译:本文解决了基于并联逆变器的并网系统中的谐振问题。逆变器与电网之间的谐波相互作用表现出各种复杂的特征,这些特征威胁着系统的稳定性和电能质量。提出了一种基于谐振模态分析(RMA)和参与因子(PF)计算的谐波谐振分析方法,以研究多逆变器并网系统的谐振问题。最初,采用基于阻抗的分析方法,并将其扩展到配电网络,该配电网络由具有LCL滤波器和比例谐振控制器的多个逆变器主导。然后,引入RMA来研究逆变器与电网之间的谐振相互作用。具体而言,通过传递函数和提出的方法解决谐波谐振特性,该方法考虑了逆变器数量的变化,不同的逆变器组合和关键系统组件。最后,给出了在PSCAD / EMTDC平台上的时域仿真。案例研究结果验证了该方法的有效性。

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