首页> 外文期刊>IEEE Transactions on Vehicular Technology >Parasitics-Assisted Soft-Switching and Secondary Modulated Snubberless Clamping Current-Fed Bidirectional Voltage Doubler for Fuel Cell Vehicles
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Parasitics-Assisted Soft-Switching and Secondary Modulated Snubberless Clamping Current-Fed Bidirectional Voltage Doubler for Fuel Cell Vehicles

机译:寄生辅助软开关和二次调制无缓冲钳位电流馈电双向倍压器,用于燃料电池汽车

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摘要

A current-fed full-bridge bidirectional voltage doubler with secondary-assisted device voltage clamping and zero-current commutation (ZCC) is proposed for fuel cell vehicles (FCVs). The proposed topology is suitable for interfacing energy storage and/or fuel cell stack with a dc bus in FCVs. A voltage doubler on the secondary side is selected to enhance the gain by 2 ×, reduce transformer size, and efficiently reduce the low-frequency dc current harmonics. Parasitics-based zero-voltage switching (ZVS), secondary-based zero-current switching of low-voltage-side devices, and ZVS of secondary devices are achieved. The proposed secondary modulation technique naturally clamps the voltage across the primary-side devices with ZCC, thus eliminating the necessity for traditional active-clamp or passive snubbers. Switching losses are reduced, owing to the soft-switching of all semiconductor devices. Steady-state analysis and design are studied and explained. The experimental results of a 1-kW proof-of-concept hardware prototype are shown to demonstrate the performance and confirm the proposed claims.
机译:提出了一种用于燃料电池汽车(FCV)的具有次级辅助装置电压钳位和零电流换向(ZCC)的电流馈送全桥双向倍压器。所提出的拓扑适用于将能量存储和/或燃料电池堆与FCV中的dc总线接口。选择次级侧的倍压器可将增益提高2倍,减小变压器尺寸,并有效降低低频直流电流谐波。实现了基于寄生的零电压开关(ZVS),低压侧设备的基于次级的零电流开关以及次级设备的ZVS。拟议的二次调制技术自然会用ZCC钳位初级侧设备两端的电压,从而消除了传统有源钳位或无源缓冲器的需要。由于所有半导体器件的软开关,减少了开关损耗。对稳态分析和设计进行了研究和解释。显示了1kW概念验证硬件原型的实验结果,以证明其性能并确认提出的权利要求。

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