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Variable Switching Frequency PWM Strategy for High-Frequency Circulating Current Control in Paralleled Inverters With Coupled Inductors

机译:具有耦合电感器并联逆变器中的高频循环电流控制的可变开关频率PWM策略

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摘要

Determination of high-frequency circulating current is important for coupled inductor design of paralleled voltage source inverters (VSIs). A time-domain model describing the circulating current of coupled inductor within a switching period is presented in this article. Using this model, the peak or rms values of circulating current can be calculated for different pulsewidth modulation (PWM) methods. Both the conventional 180(& x00B0;) interleaved PWM and zero-common-mode voltage PWM algorithms are studied here. Considering the saturation nature of the magnetic cores in determining the effective inductance of coupled inductors, the variable switching frequency PWM (VSFPWM) is proposed to better utilize the coupled inductor & x0027;s saturation limit, which is determined by high-frequency circulating current peak value. With the proposed strategy, both switching losses and electromagnetic interference are improved with respect to the constant switching frequency PWM. Moreover, the detailed power losses analysis of paralleled VSIs has been presented and the dynamic performance of the proposed VSFPWM has been well investigated. Finally, the proposed method has been extended to the system with 2N paralleled inverters. Detailed simulation and experimental results are provided to validate the proposed method.
机译:高频循环电流的确定对于并联电压源逆变器(VSI)的耦合电感设计非常重要。本文介绍了描述切换周期内耦合电感器的循环电流的时域模型。使用该模型,可以计算循环电流的峰值或rms值,以针对不同的脉冲宽度调制(PWM)方法计算。这里研究了传统的180(&x00b0;)交错PWM和零共模电压PW​​M算法。考虑到磁核的饱和性质在确定耦合电感器的有效电感时,提出了可变开关频率PWM(VSFPWM)以更好地利用耦合电感器和X0027; S饱和度极限,这是由高频循环电流峰确定的价值。利用所提出的策略,相对于恒定开关频率PWM改善了开关损耗和电磁干扰。此外,已经介绍了并联VSI的详细功率损耗分析,并对提议的VSFPWM的动态性能进行了很好的研究。最后,该方法已经扩展到系统中的2 <斜斜体> N 并联逆变器。提供了详细的模拟和实验结果以验证提出的方法。

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