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首页> 外文期刊>Journal of power electronics >A Study on Implementing a Phase-Shift Full-Bridge Converter Employing an Asynchronous Active Clamp Circuit
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A Study on Implementing a Phase-Shift Full-Bridge Converter Employing an Asynchronous Active Clamp Circuit

机译:利用异步有源钳位电路实现相移全桥变换器的研究

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The conventional Phase-Shift Full-Bridge (PSFB) converter has a serious voltage spike because of the ringing between the leakage inductance of the transformer and the parasitic output capacitance of the secondary side rectifier switches. To overcome this problem, an asynchronous active clamp technique employing an auxiliary DC/DC converter has been proposed. However, an exact analyses for designing the auxiliary DC/DC converter has not been presented. Therefore, the amount of power that is supposed to be handled in the auxiliary DC/DC converter is calculated through a precise mode analyses in this paper. In addition, this paper proposes a lossy snubber circuit with hysteresis characteristics to reduce the burden that the auxiliary DC/DC converter should take during the starting interval. This technique results in optimizing the size of the magnetic component of the auxiliary DC/DC converter. The operational principles and the theoretical analyses are validated through experiments with a 48V-to-30V/15A prototype.
机译:由于变压器的漏感与次级侧整流器开关的寄生输出电容之间的振荡,常规相移全桥(PSFB)转换器具有严重的电压尖峰。为了克服这个问题,已经提出了采用辅助DC / DC转换器的异步有源钳位技术。但是,尚未提供用于设计辅助DC / DC转换器的精确分析。因此,本文通过精确的模式分析计算了应该在辅助DC / DC转换器中处理的电量。此外,本文提出了一种具有磁滞特性的有损耗缓冲电路,以减少辅助DC / DC转换器在启动间隔期间应承担的负担。此技术可优化辅助DC / DC转换器的磁性组件尺寸。通过使用48V至30V / 15A原型进行的实验验证了工作原理和理论分析。

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