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Circulating current analysis and suppression in bipolar DC-DC converters

机译:双极性DC-DC转换器中的循环电流分析和抑制

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Bipolar dc-dc converters, which are widely used in the battery testing equipment, have many advantages such as simple structure, wide range of output voltages and high conversion efficiency. However, the traditional synchronous carrier modulation method leads to a circulating current in the ground wire connected between filtering capacitors and the negative dc input bus. The circulating current results in enlarged power loss of switching devices and low conversion efficiency of the converter. This paper presents an asynchronous carrier modulation method which makes a half cycle phase-shift to the carrier wave. Thus, the bipolar output currents could be identical in amplitude and opposite in directions to eliminate the circulating current and its influence on the converter. The simulation results validate the feasibility of the asynchronous carrier modulation on suppressing the circulating current of the bipolar dc-dc converter and the effect on increasing conversion efficiency under light loads.
机译:双极型dc-dc转换器广泛应用于电池测试设备中,具有许多优点,例如结构简单,输出电压范围宽和转换效率高。但是,传统的同步载波调制方法会导致在滤波电容器和负直流输入总线之间连接的地线中产生循环电流。循环电流导致开关装置的功率损耗增大,并且转换器的转换效率低。本文提出了一种异步载波调制方法,该方法使载波相移了半个周期。因此,双极性输出电流在幅度上可以相同,而在方向上可以相反,以消除循环电流及其对转换器的影响。仿真结果验证了异步载波调制抑制双极性dc-dc转换器的循环电流的可行性以及对提高轻载条件下的转换效率的影响。

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