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Theory and Experiment on an Optimal Carrier Frequency of a Modular Multilevel Cascade Converter With Phase-Shifted PWM

机译:具有相移PWM的模块化多级串级变换器的最佳载波频率的理论和实验

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This paper provides theoretical and experimental discussions on an optimal carrier frequency for a phase-shifted pulsewidth modulation modular multilevel cascade converter for grid connections. The theoretical discussion concludes that a ratio of the optimal carrier frequency with respect to the supply (ac) frequency is 5/2. A three-phase downscaled front-to-front system is designed, constructed, and tested to confirm validity of the theoretical discussion. It consists of a pair of three-phase modular multilevel cascade converters rated at 400 Vdc and 10 kW, where the carrier frequency is set to 450 Hz and the ac frequency to 180 Hz, that is, their ratio is equal to 5/2. Moreover, simulated waveforms are compared to experimental ones under the same operating conditions. Both experimental and simulated waveforms agree well with each other not only in steady states but also in transient states.
机译:本文提供了关于用于电网连接的相移脉宽调制模块化多级级联转换器的最佳载频的理论和实验讨论。理论讨论得出的结论是,最佳载波频率相对于电源(ac)频率的比率为5/2。设计,构建和测试了三相缩减规模的从前到前的系统,以确认理论讨论的有效性。它由一对额定功率为400Vdc和10kW的三相模块化多级级联转换器组成,其中载波频率设置为450Hz,交流频率设置为180Hz,即它们的比率等于5/2。此外,在相同的操作条件下,将模拟波形与实验波形进行比较。实验波形和模拟波形都不仅在稳态下而且在瞬态下也彼此一致。

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