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Dynamic Evaluation of LCL-type Grid-Connected Inverters with Different Current Feedback Control Schemes

机译:具有不同电流反馈控制方案的LCL型并网逆变器的动态评估

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摘要

Proportional-resonant (PR) compensator and LCL filter becomes a better choice in grid-connected inverter system with high performance and low costs. However, the resonance phenomenon caused by LCL filter affect the system stability significantly. In this paper, the stability problem of three typical current feedback control schemes in LCL grid-connected system are analyzed and compared systematically. Analysis in s-domain take the effect of the digital computation and modulation delay into account. The stability analysis is presented by root locus in the discrete domain, the optimal values of the controller and filter with different feedback configurations are provided. The impacts of digital delay, PR parameters and LCL parameters on different control strategies are also investigated. Finally, the theoretical analysis are validated by simulation results.
机译:在具有高性能和低成本的并网逆变器系统中,比例谐振(PR)补偿器和LCL滤波器成为更好的选择。但是,由LCL滤波器引起的谐振现象会严重影响系统稳定性。本文对LCL并网系统中三种典型的电流反馈控制方案的稳定性问题进行了系统的分析和比较。 s域中的分析考虑了数字计算和调制延迟的影响。通过离散域中的根轨迹来进行稳定性分析,并提供具有不同反馈配置的控制器和滤波器的最优值。还研究了数字延迟,PR参数和LCL参数对不同控制策略的影响。最后,仿真结果验证了理论分析的正确性。

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