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Active power decoupling methods for three-phase grid-connected converters under unbalanced grid conditions

机译:电网不平衡条件下三相并网逆变器的有功去耦方法

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The grid-voltage unbalance can result in a double-frequency component in the output power of a three-phase grid-connected converter, which significantly degrades the system performance. To address this issue, the power decoupling concept, which was previously developed for the single-phase system to handle the double-frequency power oscillation, is applied to the three-phase system in this paper. To begin with, three topologies are proposed to implement the power decoupling function in the three-phase converter system, which can maintain dc-link voltage constant while ac grid current balanced under unbalanced grid voltage through absorbing the double-frequency power component. Then, the control system realization of each power decoupling topology is presented and their working principles are described in detail. Furthermore, three prototypes are developed under different types of unbalanced grid voltage condition to evaluate the performance of the proposed methods. Experimental results are eventually provided to validate the effectiveness of the three proposed schemes.
机译:电网电压不平衡会导致三相并网转换器的输出功率中出现双频分量,从而严重降低系统性能。为了解决这个问题,本文将先前为单相系统开发的用于处理双频功率振荡的功率去耦概念应用于三相系统。首先,提出了三种拓扑结构来实现三相转换器系统中的功率去耦功能,该拓扑结构可以通过吸收双频功率分量来保持直流链路电压恒定,同时在不平衡的电网电压下平衡交流电网电流。然后,介绍了每种功率去耦拓扑的控制系统实现,并详细描述了它们的工作原理。此外,在不同类型的不平衡电网电压条件下开发了三个原型,以评估所提出方法的性能。最终提供了实验结果,以验证三个提议方案的有效性。

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