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首页> 外文期刊>Emerging and Selected Topics in Power Electronics, IEEE Journal of >Efficiency Optimized Single-Stage Reconfigurable DC/DC Converter for Hybrid and Electric Vehicles
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Efficiency Optimized Single-Stage Reconfigurable DC/DC Converter for Hybrid and Electric Vehicles

机译:针对混合动力和电动汽车的效率优化的单级可重构DC / DC转换器

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摘要

This paper proposes a single-stage reconfigurable topology for an isolated dc/dc converter that supplies the 12 V power net from high voltage (HV) battery pack in hybrid and electric vehicles. The proposed topology solves the problem of reduced converter efficiency in the upper range of HV battery voltages. The converter is based on a zero voltage transition (ZVT) phase shift (PS) full bridge dc/dc converter that is during its operation, depending on the instantaneous value of battery voltage, reconfigured into a push-pull converter. The more efficient ZVT PS configuration covers the upper range of input voltages whereas the hard-switching push-pull configuration covers the lower, less significant range. The ZVT PS configuration, due to tighter voltage range, operates with reduced turn-off losses, significantly decreased circulating current in the freewheeling period as well as improved efficiency of the rectifier stage. The point of reconfiguration is chosen to maximize the average efficiency according to the histogram of HV battery voltage during a typical driving cycle. The operation of the proposed converter and the efficiency improvement are validated experimentally.
机译:本文提出了一种用于隔离式DC / DC转换器的单级可重构拓扑,该拓扑可从混合动力和电动汽车中的高压(HV)电池组提供12 V电源网。提出的拓扑解决了在高电压电池电压范围内转换器效率降低的问题。该转换器基于零电压转换(ZVT)相移(PS)全桥DC / DC转换器,该转换器在运行期间根据电池电压的瞬时值重新配置为推挽转换器。效率更高的ZVT PS配置覆盖了输入电压的较高范围,而硬开关推挽配置覆盖了较低的,不太重要的范围。由于电压范围较窄,ZVT PS配置可在降低关断损耗的情况下工作,在续流期间显着减少循环电流,并提高整流器级的效率。在典型的驱动周期内,根据HV电池电压的直方图选择重新配置的点,以使平均效率最大化。所提出的转换器的操作和效率的提高已通过实验验证。

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