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Space-Vector-Based Hybrid PWM Strategy for Reduced DC-Link Capacitor Current Stress in the Postfault Grid-Connected Three-Phase Rectifier

机译:基于空间矢量的混合PWM策略可降低故障后并网三相整流器中直流链路电容器的电流应力

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摘要

A hybrid pulse width modulation (PWM) strategy for the postfault grid-connected three-phase rectifier is proposed in this paper to achieve a reduced current stress on the dc-link capacitors. The capacitor current per sampling period is investigated, which consists of the effective duty ratio-based currents and the ineffective duty ratio-based currents. The currents introduced by the ineffective duty ratio are highly dependent on the allocation of the ineffective duty ratio. Therefore, this degree of freedom of the ineffective duty ratio allocation can be utilized to minimize the capacitor current. Then, the effect of the ineffective duty ratio allocation on the amplitudes of the capacitor current is analyzed. Based on this analysis, the optimized ineffective duty ratio allocations are proposed, where the ineffective duty ratios are flexibly allocated with respect to the vector angle of the ac current. Furthermore, a novel distribution of the vector plane is developed for the proposed hybrid space vector modulation (HBSVM) strategy. Moreover, the root-mean-square (RMS) values of the capacitor current are used to evaluate the performance of the proposed hybrid PWM strategy. The analytical results demonstrate that the proposed HBSVM strategy results in the reduced capacitor current RMS, which avoids a failure of the dc-link capacitors. Finally, the experimental results validate the effectiveness of the proposed HBSVM strategy.
机译:本文提出了一种用于故障后并网三相整流器的混合脉冲宽度调制(PWM)策略,以降低直流链路电容器上的电流应力。研究每个采样周期的电容器电流,该电流由基于有效占空比的电流和基于无效占空比的电流组成。无效占空比所引入的电流高度依赖于无效占空比的分配。因此,可以利用无效占空比分配的这种自由度来最小化电容器电流。然后,分析了无效的占空比分配对电容器电流幅度的影响。基于此分析,提出了优化的无效占空比分配,其中相对于交流电流的矢量角灵活地分配了无效占空比。此外,为提出的混合空间矢量调制(HBSVM)策略开发了矢量平面的新型分布。此外,电容器电流的均方根(RMS)值用于评估所提出的混合PWM策略的性能。分析结果表明,所提出的HBSVM策略可降低电容器电流RMS,从而避免直流环节电容器发生故障。最后,实验结果验证了所提出的HBSVM策略的有效性。

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