Research on Control Method of Photovoltaic Inverter Based on PIR

Fanrong Meng, Qingsheng Liao, M. Wang, Jinshuo Liu
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Abstract

With the rapid development of green energy, inverter technology has become a key technology for renewable energy. To solve the problem of low output voltage of photovoltaic panel, a two-stage topology is proposed. The front stage adopts high-frequency isolated phase-shifted full-bridge structure, which can realize soft-switching technology. The last stage is single-phase inverter structure. In order to achieve high efficiency, high quality output and improve the dynamic and static performance of the inverter system, based on the traditional double closed-loop proportional integral (PI) control, the current control loop proportional control and voltage control loop proportional integral resonance (PIR) control method are improved. The parameters are derived by small signal model, and the system is simulated and verified by experiments. The experimental results show that the system has good dynamic and static performance, and can effectively suppress resonance.
基于PIR的光伏逆变器控制方法研究
随着绿色能源的快速发展,逆变器技术已成为可再生能源的关键技术。针对光伏板输出电压低的问题,提出了一种两级拓扑结构。前级采用高频隔离相移全桥结构,可实现软开关技术。最后一级为单相逆变器结构。为了实现高效率、高质量输出,提高逆变系统的动静态性能,在传统双闭环比例积分(PI)控制的基础上,改进了电流控制回路比例控制和电压控制回路比例积分谐振(PIR)控制方法。通过小信号模型推导了系统参数,并对系统进行了仿真和实验验证。实验结果表明,该系统具有良好的动静态性能,能有效抑制谐振。
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