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A high efficiency hybrid resonant PWM zero-voltage-switching full-bridge DC-DC converter for electric vehicle battery chargers

机译:用于电动汽车电池充电器的高效混合谐振PWM零电压开关全桥DC-DC转换器

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This paper presents a high-efficiency zero-voltage-switching (ZVS) dc-dc converter combing resonant and pulse-width-modulation (PWM) power conversions for electric vehicle battery chargers. A half-bridge LLC circuit, which operates at series resonant frequency, shares the lagging-leg with a phase-shift-full-bridge (PSFB) dc-dc circuit to guarantee ZVS of the lagging-leg switches of the full bridge from zero to full load. A secondary-side hybrid-switching circuit, which is formed by the leakage inductance, output inductor of the PSFB dc-dc circuit, a small additional resonant capacitor and two additional diodes, is incorporated at the secondary side of the PSFB dc-dc circuit. With the hybrid-switching circuit providing a clamp path, the voltage overshoots that arise during the turn-off of the rectifier diodes are eliminated and the voltage stress of bridge rectifier is clamped to the minimal achievable value, which is equal to secondary-reflected input voltage of the transformer. The sum of the output voltage of LLC resonant circuit and the resonant capacitor voltage of the hybrid-switching circuit is applied between the bridge rectifier and the output inductor of the PSFB dc-dc circuit during the freewheeling phases. As a result, the primary-side circulating current of the PSFB dc-dc circuit is instantly reset to zero achieving minimized circulating losses. The experimental results based on a 4 kW prototype circuit show 98.6% peak efficiency and high efficiency over wide load and output voltage ranges.
机译:本文提出了一种高效的零电压开关(ZVS)DC-DC转换器,该转换器将谐振和脉冲宽度调制(PWM)功率转换结合在一起,用于电动汽车电池充电器。在串联谐振频率下工作的半桥LLC电路与相移全桥(PSFB)DC-DC电路共享滞后脚,以确保全桥的滞后开关的ZVS从零开始满负荷。由PSFB dc-dc电路的漏感,输出电感器,一个小的附加谐振电容器和两个附加二极管组成的次级侧混合开关电路被合并到PSFB dc-dc电路的次级侧。通过混合开关电路提供钳位路径,可以消除在整流二极管关断期间出现的电压过冲,并将桥式整流器的电压应力钳位到最小的可实现值,该值等于次级反射输入变压器的电压。在续流阶段,LLC谐振电路的输出电压和混合开关电路的谐振电容器电压之和被施加在桥式整流器和PSFB dc-dc电路的输出电感器之间。结果,PSFB dc-dc电路的初级侧循环电流立即重置为零,从而将循环损耗降至最低。基于4 kW原型电路的实验结果表明,在宽负载和输出电压范围内,峰值效率和高效率达到98.6%。

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