Minimum DC Link Capacitance for a Family of Three-Phase Three-Level Grid-Connected Converters Operating with Unity Power Factor

Yarden Siton, A. Abramovitz, M. Mellincovsky, M. Sitbon, S. Lineykin, A. Kuperman
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Abstract

The paper presents a method for derivation of the minimum split DC link capacitance in three-phase three-level DC-AC converters operating with unity power factor with neither active balancing circuits nor AC zero sequence injection. It is shown that due to the fact that partial DC link voltages and AC-side phase voltages obtain extremum values at different instants, it is possible to reduce the minimum value of the former below maximum value of the latter while still ensuring correct operation of the power stage. Minimum attainable split DC link capacitance values are therefore obtained according to boundary case of tangency between the above-mentioned voltages. Analytical derivations are accurately verified by simulations and experiments, demonstrating close agreement.
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以统一功率因数运行的一系列三相三电平并网变换器的最小直流链路电容
本文提出了一种既无有源平衡电路又无交流零序注入的单位功率因数三相三电平DC-AC变换器的最小分路直流链路电容的推导方法。结果表明,由于部分直流链路电压和交流侧相位电压在不同时刻获得极值,在保证功率级正常运行的情况下,可以将前者的最小值降低到后者的最大值以下。因此,根据上述电压之间相切的边界情况,获得可达到的最小分离直流链路电容值。通过仿真和实验准确地验证了解析推导的正确性。
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