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Applying Mode Exchange to High Step-Down Converter to Obtain Wide Input Voltage Range

机译:将模式交换应用于高压降转换器以获得宽输入电压范围

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This paper presents a non-isolated high step-down converter with switching zero voltage switching (ZVS). Compared with the traditional buck converter, in addition to using the duty cycle to determine the voltage gain, the proposed converter also use coupled inductors to achieve relatively high step-down voltage gain. In automotive electronics and telecommunications applications, the input voltage may instantaneously change. As the input voltage increases, the efficiency of the high step-down converter will be decreased. In order to overcome this problem, this paper presents a wide input voltage range for this converter. Based on the input voltage, changing the circuit topology provides a suitable voltage gain and hence obtains a relatively suitable duty cycle. Accordingly, the converter operating under the most load over a wide input voltage range can perform relatively good efficiency. In addition, the leakage inductance energy can be recovered to reduce switch voltage spikes. The protype circuit, with input voltage of 18-54V, output voltage of 2.5V and output current of 10A, is employed to demonstrate the effectiveness of the proposed control strategy.
机译:本文介绍了一个非隔离的高压降转换器,具有开关零电压切换(ZVS)。与传统的降压转换器相比,除了使用占空比确定电压增益之外,所提出的转换器还使用耦合电感器来实现相对高的降压电压增益。在汽车电子和电信应用中,输入电压可能瞬间改变。随着输入电压的增加,高压降转换器的效率将减小。为了克服这个问题,本文提出了该转换器的宽输入电压范围。基于输入电压,改变电路拓扑提供合适的电压增益,因此获得相对合适的占空比。因此,在宽输入电压范围内的最大负载下操作的转换器可以执行相对良好的效率。另外,可以恢复漏电电感以减少开关电压尖峰。采用输入电压为18-54V,输出电压为2.5V的输出电压和10A的输出电流,以证明所提出的控制策略的有效性。

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