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首页> 外文期刊>Power Electronics, IET >Half-bridge converter based on switched-capacitor resonance without using deadtime control for automotive applications
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Half-bridge converter based on switched-capacitor resonance without using deadtime control for automotive applications

机译:基于开关电容器谐振的半桥转换器,无需在汽车应用中使用死区时间控制

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摘要

For virtually all converters and inverters, it is necessary to take care of shot-through and deadtime in the half-bridge subcircuits. Floating gate drive designs are also needed. The additional cost to realise these features becomes a concern in low power applications. This study presents a centre-tapped inductor method added to the bridge to satisfy these constraints costeffectively. The shoot-through current is under controlled. Using push??pull P and N channel metal-oxide silicon field-effect transistors, the floating or level-shift gate drive can be eliminated and the converter becomes simple. The proposed method has been successfully applied to switched capacitor resonant converter. Formulations of the overlapping and resonant equations have also been developed. It is found that the current in the centre-tapped inductor can be transferred to the resonant inductor with the proposed circuitry with no additional loss involved in the design. Moreover, all the current is under zero-current switching. The design has been validated experimentally and high efficiency is realised using the proposed design.
机译:对于几乎所有的转换器和逆变器,必须注意半桥子电路中的击穿和停顿时间。还需要浮栅驱动器设计。在低功率应用中,实现这些功能的额外成本成为一个问题。这项研究提出了一种中心抽头电感器方法,该方法被添加到电桥中,以有效地满足这些约束条件。直通电流受到控制。使用推挽P和N沟道金属氧化物硅场效应晶体管,可以消除浮动或电平移位栅极驱动,并且转换器变得简单。所提出的方法已经成功地应用于开关电容器谐振变换器。重叠方程和共振方程的公式也已经开发出来。可以发现,利用提出的电路,中心抽头电感器中的电流可以传递到谐振电感器,而设计中不会涉及额外的损耗。而且,所有电流都处于零电流开关状态。该设计已通过实验验证,并通过提出的设计实现了高效率。

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