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One-Cycle Control Strategy for Dual-Converter Three-Phase PWM Rectifier under Unbalanced Grid Voltage Conditions

机译:电网电压不平衡条件下双转换器三相PWM整流器的单周期控制策略

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摘要

In this paper, a dual-converter three-phase pulse width modulation (PWM) rectifier based on unbalanced one-cycle control (OCC) strategy is proposed. The proposed rectifier is used to eliminate the second harmonic waves of DC voltage and distortion of line currents under unbalanced input grid voltage conditions. The dual-converter PWM rectifier employs two converters, which are called positive-sequence converter and negative-sequence converter. The unbalanced OCC system compensates feedback currents of positive-sequence converter via grid negative-sequence voltages, as well as compensates feedback currents of negative-sequence converter via grid positive-sequence voltages. The AC currents of positive- and negative-sequence converter are controlled to be symmetrical. Thus, the workload of every switching device of converter is balanced. Only one conventional PI controller is adopted to achieve invariant power control. Then, the parameter tuning is simplified, and the extraction for positive- and negative-sequence currents is not needed anymore. The effectiveness and the viability of the control strategy are demonstrated through detailed experimental verification.
机译:本文提出了一种基于非平衡单周期控制(OCC)策略的双转换器三相脉宽调制(PWM)整流器。提出的整流器用于消除不平衡输入电网电压条件下的直流电压二次谐波和线路电流失真。双转换器PWM整流器采用两个转换器,分别称为正序转换器和负序转换器。不平衡OCC系统通过电网负序电压补偿正序转换器的反馈电流,并通过电网正序电压补偿负序转换器的反馈电流。正序和负序转换器的交流电流被控制为对称。因此,转换器的每个开关设备的工作量得以平衡。仅采用一种传统的PI控制器来实现恒定功率控制。然后,简化了参数调整,并且不再需要提取正序和负序电流。通过详细的实验验证,证明了该控制策略的有效性和可行性。

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