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The experimental performance of a multi-level AC-DC power electronic converter for PMG-based WECSs

机译:基于PMG的WECS的多电平AC-DC功率电子转换器的实验性能

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This paper experimentally tests a new multi-level generator-side ac-dc power electronic converter (PEC) for applications in permanent magnet generator (PMG)-based wind energy conversion systems (WECSs). The tested generator-side PEC is designed as a cascaded H-bridge multi-level PEC, and is fed by one 3φ supply. The used H-bridge cells are modified such that each cell is composed of a forward half-bridge and a backward half-bridge. The forward half-bridge produces a dc voltage, while the backward half-bridge provides a path for the current to flow to the next H-bridge cell (connected in series). The new multi-level ac-dc PEC is implemented for experimental testing as a generator-side ac-dc PEC in a 7.5 kW PMG-based WECS. The tested acdc PEC is operated using switching signals that are generated by the sinusoidal level-shifted pulse width modulation strategy. Experimental test results demonstrate reduced harmonic distortion in input currents, efficient and high quality power transfer from the PMG to the dc link, and high input power factor.
机译:本文通过实验测试了一种新型的多级发电机侧交直流电力电子转换器(PEC),该转换器可用于基于永磁发电机(PMG)的风能转换系统(WECS)。经过测试的发电机侧PEC设计为级联H桥多级PEC,并由一个3φ电源供电。修改所使用的H桥单元,使得每个单元由前半桥和后半桥组成。前半桥产生一个直流电压,而后半桥则为电流流到下一个H桥单元(串联)提供了一条路径。新的多级交流-直流PEC在基于7.5 kW PMG的WECS中作为发电机侧的交流-直流PEC进行了实验测试。经过测试的acdc PEC使用正弦电平移位脉冲宽度调制策略生成的开关信号进行操作。实验测试结果表明,输入电流的谐波失真降低,从PMG到直流链路的高效,高质量功率传输以及高输入功率因数。

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