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Suppression of High-Frequency Circulating Current Caused by Asynchronous Carriers for Parallel Three-Phase Grid-Connected Converters

机译:三相并网并联逆变器异步载波引起的高频环流抑制

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摘要

The parallel three-phase grid-connected converters sharing dc and ac bus can increase the system power level effectively. However, the circulating current will occur inevitably. The existing studies primarily focus on dc, fundamental, and low-frequency circulating current. The high-frequency circulating current (HFCC) caused by asynchronous carriers is studied emphatically in this paper, which is based on the analysis of the change of circulating current in one control cycle. A novel method to suppress HFCC caused by asynchronous carriers of modules is proposed. In this method, the carrier period of slave module is adjustable and the carrier period of the master module is constant. When a large phase shift between modules occurs, an adjusting cycle is inserted to carrier of slave module to realize resynchronizing with master module. It is noted that there is no other commutation between the two modules (expect the dq current reference), such as the carrier information. Finally, the feasibility and effectiveness of the proposed method are verified by experiments.
机译:共享直流和交流总线的并联三相并网转换器可以有效地提高系统功率。但是,不可避免地会产生循环电流。现有的研究主要集中在直流,基波和低频循环电流上。在分析一个控制周期内循环电流变化的基础上,着重研究了异步载波引起的高频循环电流(HFCC)。提出了一种抑制模块异步载波引起的HFCC的新方法。在这种方法中,从模块的载波周期是可调的,而主模块的载波周期是恒定的。当模块之间发生较大的相移时,将调整周期插入从模块的载体,以实现与主模块的重新同步。注意,两个模块之间没有其他换向(期望dq当前参考),例如载波信息。最后,通过实验验证了该方法的可行性和有效性。

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