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Modeling and control of gan based multiport power converter

机译:基于gan的多端口功率转换器的建模和控制

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This paper presents the small-signal modeling and controller design of a single phase multilevel, three-port based on gallium nitride (GaN) devices for renewable energy and UPS applications. The system has two ac-port with five-level waveforms and one DC port. A small-signal model of the converter is derived by the method of state-space averaging. It is controlled with two loops, an outer voltage controller is designed to regulate the DC link voltage and inner control loop compensates the grid current to track the step change in the load current. Comparison of the closed loop simulation from the derived small-signal model and a detailed circuit model showcases the effectiveness of the small signal model. Closed loop simulation results from both the small-signal model and the detail circuit model are presented and experimental results are provided.
机译:本文介绍了用于可再生能源和UPS应用的单相,多级,三端口,基于氮化镓(GaN)器件的小信号建模和控制器设计。该系统有两个带五电平波形的交流端口和一个直流端口。通过状态空间平均的方法导出转换器的小信号模型。它由两个回路控制,一个外部电压控制器设计用于调节DC链路电压,而内部控制回路补偿电网电流以跟踪负载电流的阶跃变化。通过对导出的小信号模型和详细电路模型进行的闭环仿真的比较,可以证明小信号模型的有效性。给出了小信号模型和详细电路模型的闭环仿真结果,并提供了实验结果。

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