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Bus-Voltage Ripple Optimization Method for Automotive Multiphase DC/DC-Converters

机译:汽车多相DC / DC转换器的总线电压纹波优化方法

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Phase interleaving is a well known technique to increase output power, power density, and efficiency of DC/DC-converters. If the n-phase converter is ideal (symmetrical), the first n-1 harmonics of the ripple are canceled in the bus-capacitors and the cut-off frequency of the EMI-filters can be increased. But tolerances of real components and control circuit can seriously limit this theoretical benefit. Tolerances of phase-shift, storage inductors and phase-current sensors are investigated to determine the causes of an unsymmetrical converter system. In order to ensure near ideal ripple cancellation despite high phase-current sensor tolerances, an approach using closed-loop control of the 1st harmonic is introduced and tested experimentally. This approach significantly improves the current balancing performance of an automotive two-phase converter.
机译:相位交织是一种众所周知的技术,可以提高DC / DC转换器的输出功率,功率密度和效率。如果n相转换器是理想的(对称的),则在汇流电容器中取消纹波的第一N-1谐波,并且可以增加EMI滤波器的截止频率。但实际部件和控制电路的公差可以严重限制这种理论效益。研究了相移,存储电感器和相电流传感器的公差,以确定不对称转换器系统的原因。为了确保尽管高相位电流传感器公差,但是尽管高相位电流传感器公差,但是通过实验介绍并测试了使用第一次谐波的闭环控制的方法。这种方法显着提高了汽车两相转换器的电流平衡性能。

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