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Repetitive and Resonant Control for a Single-Phase Grid-Connected Hybrid Cascaded Multilevel Converter

机译:单相并网混合级联多电平变换器的重复共振控制

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摘要

This paper investigates the use of adaptive repetitive and resonant control approaches for the control of a single-phase hybrid cascaded multilevel converter designed to interface with power grids of highly distorted voltage waveform. The proposed repetitive/resonant control (RPC/RSC) is used for the extraction of clean phase angle, frequency, and magnitude information of the fundamental grid voltage together with the control of the converter current and mitigation of current harmonics under distorted grid voltage and variable frequency. The RPC time period and the RSC resonant frequency are updated adaptively using the estimated grid frequency while interpolation is used to preserve the RPC rejection capability under noninteger number of time steps per period. Detailed modeling and experimental investigation of the proposed control scheme are carried out.
机译:本文研究了自适应重复和谐振控制方法在控制单相混合级联多电平转换器中的应用,该转换器设计为与高失真电压波形的电网接口。拟议的重复/谐振控制(RPC / RSC)用于提取基本电网电压的纯净相位角,频率和幅度信息,以及在变差的电网电压和可变电压下控制转换器电流和减轻电流谐波频率。 RPC时间周期和RSC谐振频率使用估计的电网频率进行自适应更新,而插值用于在每个周期的时间步数为非整数的情况下保留RPC拒绝能力。对所提出的控制方案进行了详细的建模和实验研究。

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