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An Integrated Control Method for Improving the Input Current of Paralleled Vienna Rectifiers

机译:一种改善并联维也纳整流器输入电流的集成控制方法

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The circulating current (CC) occurs among the paralleled converters due to the inconsistency of impedance parameters, carrier phases, switching frequencies and so on, and for Vienna rectifier, which contains the current distortion problem, will bring worse input current. Therefore, in this paper, an integrated control method is proposed to suppress the CC and current distortion. Specifically, the modeling of CC in paralleled Vienna rectifiers is established, on the basis of normal zero-sequence circulating current (ZSCC) control, a feedforward control is added to eliminate the ZSCC spikes. For the current distortion, the corresponding analysis and solution in space vector modulation (SVM) is conducted, to facilitate the implementation, the zero-sequence component injected by the equivalent carrier-based PWM method is deduced. Finally, the feasibility of the proposed integrated control strategy is validated by simulation and experiment.
机译:由于阻抗参数,载波相位,开关频率等的不一致性,在并联的转换器之间会产生循环电流(CC),对于包含电流畸变问题的Vienna整流器,其输入电流会更差。因此,本文提出了一种集成控制方法来抑制CC和电流失真。具体而言,在常规零序循环电流(ZSCC)控制的基础上,建立了并联式Vienna整流器中CC的建模,并添加了前馈控制以消除ZSCC尖峰。针对电流畸变,进行了空间矢量调制(SVM)的相应分析和解决方案,为便于实现,推导了基于等效载波的PWM方法注入的零序分量。最后,通过仿真和实验验证了所提出的集成控制策略的可行性。

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