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Naturally Clamped Zero-Current Commutated Soft-Switching Current-Fed Push–Pull DC/DC Converter: Analysis, Design, and Experimental Results

机译:自然钳位零电流换向软开关电流馈送推挽式DC / DC转换器:分析,设计和实验结果

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摘要

The proposed converter has the following features: 1) zero-current commutation (ZCC) and natural voltage clamping (NVC) eliminate the need for active-clamp circuits or passive snubbers required to absorb surge voltage in conventional current-fed topologies. 2) Switching losses are reduced significantly owing to zero-current switching of primary-side devices and zero-voltage switching of secondary-side devices. Turn-on switching transition loss of primary devices is also negligible. 3) Soft switching and NVC are inherent and load independent. 4) The voltage across primary-side device is independent of duty cycle with varying input voltage and output power and clamped at rather low reflected output voltage enabling the use of low-voltage semiconductor devices. These merits make the converter good candidate for interfacing low-voltage dc bus with high-voltage dc bus for higher current applications. Steady state, analysis, design, simulation, and experimental results are presented.
机译:所提出的转换器具有以下特征:1)零电流换向(ZCC)和自然电压钳制(NVC)消除了在传统电流馈电拓扑中吸收浪涌电压所需的有源钳位电路或无源缓冲器的需要。 2)由于初级侧设备的零电流开关和次级侧设备的零电压开关,开关损耗显着降低。初级设备的导通开关转换损耗也可以忽略不计。 3)软交换和NVC是固有的,并且与负载无关。 4)一次侧设备两端的电压与占空比无关,输入电压和输出功率不断变化,并且被钳制在相当低的反射输出电压下,从而可以使用低压半导体设备。这些优点使该转换器非常适合将低压直流总线与高压直流总线接口,以用于更高电流的应用。给出了稳态,分析,设计,仿真和实验结果。

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