双向PSFB DC-DC转换器具有独特的PWM控制方案和无缝模式转换,使用增强的数字控制

H. Nene, T. Zaitsu
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引用次数: 8

摘要

隔离式双向DC-DC转换器通常用于汽车和数据存储应用,其中能量以双向方式在高压直流母线和低压直流母线/电池之间传输。典型的实现包括带同步整流的移相全桥(PSFB),以降压(buck)模式控制从高压母线到低压电池的功率流,以及以升压(boost)模式控制从低压电池到高压母线的反向功率流的电流馈电推挽转换器。实施这种PSFB双向操作的主要挑战是:(1)电流馈电推挽式变换器在反向功率流(升压模式)时的高压电桥-场效应管整流;(2)降压模式和升压模式之间的快速无缝转换。本文介绍了采用50%占空比相移PWM控制方案来控制反向潮流中的高压桥式场效应管整流所获得的系统性能改进。提出了一种在降压模式和升压模式之间快速无缝转换的新方法。给出了宽输入范围400V←→12v、300W的数字控制隔离型双向DC-DC变换器的实验结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bi-directional PSFB DC-DC converter with unique PWM control schemes and seamless mode transitions using enhanced digital control
Isolated Bi-Directional DC-DC converters are commonly used in automotive and data storage applications where energy is transferred between a high-voltage DC bus and a low-voltage DC bus/battery in a bi-directional fashion. A typical implementation includes a phase-shifted full-bridge (PSFB) with synchronous rectification that controls power flow from the high-voltage bus to the low-voltage battery in step-down (buck) mode, and a current-fed push-pull converter that controls the reverse power flow from the low-voltage battery to the high-voltage bus in step-up (boost) mode. The major challenges to implement this PSFB bi-directional operation are; (1) High voltage bridge-FET rectification during reverse power flow (boost mode) in current-fed push-pull converter, (2) Fast seamless transitions between buck and boost modes. This paper presents system performance improvements obtained using 50% duty with phase-shift PWM control scheme to control high voltage bridge-FET rectification in reverse power flow. A new method that provides fast seamless transitions between buck and boost modes of operations is also presented. Experimental results obtained using a wide input range 400V ←→ 12 V, 300W digitally controlled isolated bi-directional DC-DC converter are presented.
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