基于开关电容的高增益DC-DC变换器在低压发电中的应用

R. Giridhar Balakrishna, V. Sonti, P. Narasimham, Sachin Jain
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摘要

对于低压发电应用,本文提出了一种独特的高增益DC-DC变换器拓扑结构。所提出的拓扑结构采用开关电容电路、h桥逆变器、带反串联开关的升压电路和倍压器来获得高电压增益。所提出的拓扑结构使用9个开关、1个开关电容、耦合电感、电压倍频电路来产生高增益的输出电压。为了在输出端实现高增益,所提出的变换器工作在断续导通模式。对于升压开关的50%占空比,所提出的转换器产生约25倍的增益。所提出的变换器可以在很宽的输入直流母线电压范围内输出。利用PSIM软件验证了该高增益DC-DC变换器的工作性能。本文介绍了所提出的高增益DC-DC变换器的工作原理,包括其工作方式和仿真结果。
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Switched Capacitor Based High-Gain DC-DC Converter for Low-Voltage Power Generation Application
For low voltage power generation applications, this paper projects an inimitable high-gain DC-DC converter topology. The proposed topology employs a switched capacitor circuit, H-bridge inverter, boost circuit with anti-series switches and voltage doubler for obtaining the high voltage gain. The proposed topology uses nine switches, one switched capacitor, coupled inductor, voltage doubler circuit for producing high-gain in the output voltage. To achieve high-gain at the output, the proposed converter operates discontinuous conduction mode. For the 50 percent duty cycle of the boost switches, the proposed converter produces a gain of about 25 times. The proposed converter can give output for a wide range of input DC bus voltage. The operation of proposed high-gain DC-DC converter is verified using PSIM software. The paper describes the operation of the proposed high-gain DC-DC converter, including its modes of operation and simulation results.
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