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A Novel High Bandwidth Current Control Strategy for SiC mosfet Based Active Front-End Rectifiers Under Unbalanced Input Voltage Conditions

机译:输入电压不平衡条件下基于SiC MOSFET的有源前端整流器的新型高带宽电流控制策略

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摘要

SiC mosfet based converters are capable of high switching frequency operation. In this paper, the converter is operated with 50-kHz switching frequency for an active front-end rectifier application. Due to high switching frequency, the grid-side filter size is reduced, and the possibility of a high bandwidth current control loop is utilized in this paper. A current control loop with bandwidth of 5 kHz is designed using a proportional–integral controller in synchronously rotating dq-reference frame. In addition, the performance of the controller is tested under unbalanced input supply conditions. During this condition, new feed-forward signals, which are added to the controller output, are proposed. The gain of the feed-forward signal can be modified to achieve balanced sinusoidal grid currents, constant dc-link voltage, or a controlled negative-sequence input current, which are typical application-depending requirements. A closed-form formula to calculate the gain of the feed-forward signal to achieve the above-mentioned requirements is also proposed in this paper. To verify the proposed method, the simulation and experimental results are presented in this paper.
机译:基于SiC MOSFET的转换器能够以高开关频率工作。在本文中,该转换器以50 kHz的开关频率工作,用于有源前端整流器应用。由于开关频率较高,因此减小了电网侧滤波器的尺寸,并利用了高带宽电流控制环路的可能性。在同步旋转dq参考帧中,使用比例积分控制器设计了带宽为5 kHz的电流控制环。另外,在不平衡输入电源条件下测试了控制器的性能。在这种情况下,建议将新的前馈信号添加到控制器输出中。可以修改前馈信号的增益,以实现平衡的正弦波电网电流,恒定的直流母线电压或受控的负序输入电流,这是典型的取决于应用的要求。本文还提出了一种闭式公式,用于计算前馈信号的增益以达到上述要求。为了验证该方法的有效性,本文给出了仿真和实验结果。

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