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Non-isolated Bidirectional Soft-Switching Current-Fed LCL Resonant DC/DC Converter to Interface Energy Storage in DC Microgrid

机译:非隔离双向软开关电流馈送LCL谐振DC / DC转换器,以连接DC微电网中的能量存储

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摘要

This paper proposes a current-fed non-isolated soft-switching bidirectional dc/dc converter for interfacing energy storage to dc microgrid. The proposed converter employs a current-fed half-bridge boost converter at front-end followed by an LCL resonant circuit to aid in soft-switching of semiconductor devices. A voltage doubler at output is selected to enhance the gain by . The LCL resonant circuit also adds a suitable voltage gain. Therefore, the topology offers overall high voltage gain without transformer or large number of multiplier circuits. For buck operation, high side voltage is first divided by half with capacitor divider to gain higher stepdown ratio. Converter operates at high switching frequency to realize merits of reduced magnetics and filters. Zero voltage turn-on is achieved for all switches and zero current turn-on and turn-off is achieved for all diodes for both buck/boost operation. Voltage across switches and diode is clamped naturally without any external snubber circuit. Detailed analysis and design have been proposed. A proof-of-concept experimental prototype rated at 350 W has been designed, developed, and tested in the laboratory to demonstrate the performance and validate the claims of the converter for wide load variation.
机译:本文提出了一种电流馈送的非隔离式软开关双向dc / dc转换器,用于将能量存储与dc微电网接口。拟议的转换器在前端采用电流馈送的半桥升压转换器,后接一个LCL谐振电路,以帮助半导体器件进行软开关。选择输出处的倍压器以将增益提高。 LCL谐振电路还增加了合适的电压增益。因此,该拓扑结构可提供总体上较高的电压增益,而无需变压器或大量的乘法器电路。对于降压工作,首先用电容器分压器将高压侧电压除以一半,以获得更高的降压比。转换器以高开关频率工作,以实现减少磁和滤波器的优点。对于降压/升压操作,所有开关均实现零电压导通,所有二极管实现零电流导通和关断。开关和二极管之间的电压自然钳位,无需任何外部缓冲电路。已经提出了详细的分析和设计。已经在实验室设计,开发和测试了额定功率350 W的概念验证实验原型,以演示性能并验证转换器在宽负载变化下的要求。

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