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Theoretical analysis of DC link capacitor current ripple reduction in the HEV DC-DC converter and inverter system using a carrier modulation method

机译:使用载波调制方法的HEV DC-DC转换器和逆变器系统中DC链路电容器电流纹波减小的理论分析

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This paper presents theoretical analysis of the dc link capacitor current ripple reduction in the HEV dc-dc converter and inverter system by using a proposed carrier modulation method. This carrier modulation method introduces a modified triangle carrier, with a switching frequency that is twice as much as the inverter's, for the dc-dc converter to synchronize this dc-dc converter output current with the SPWM inverter input current. Resulting from this synchronization, the current ripple flowing into the dc link capacitor is greatly reduced by 50%, compared to the unsynchronized traditional triangle carrier method, whose switching frequency is the same as the inverter's. Experimental results are obtained from a 30 kW boost converter and inverter prototype. Theoretical equations are derived to demonstrate the effectiveness for all situations, considering different load power factors and dc-dc converter duty cycles.
机译:通过提出的载波调制方法,对HEV DC-DC转换器和逆变器系统中的DC链路电容器电流纹波减小进行了理论分析。这种载波调制方法引入了一种改进的三角载波,其开关频率是逆变器的两倍,以便DC-DC转换器将该DC-DC转换器的输出电流与SPWM逆变器的输入电流同步。由于这种同步,与不同步的传统三角载波方法(其开关频率与逆变器的频率相同)相比,流入直流链路电容器的电流纹波大大降低了50%。从30 kW升压转换器和逆变器原型获得实验结果。推导了理论公式,以证明在各种情况下的有效性,其中考虑了不同的负载功率因数和dc-dc转换器占空比。

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