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High frequency high efficiency bidirectional dc-dc converter module design for 10 kVA solid state transformer

机译:用于10 kVA固态变压器的高频高效双向DC-DC转换器模块设计

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This paper presents the development of modular dual-half-bridge (MDHB) bidirectional dc-dc converter as the dc-dc stage of 10 kVA single phase solid state transformer (SST) for future renewable electric energy distribution and intelligent power management systems. The dc-dc converter, connected to 12 kV DC bus generated by an ac-dc rectifier interfacing with 7.2 kV electric utility grid, is to provide galvanic isolation function as well as 400 V DC bus for DC loads. The dc-dc converter consists of multiple low-voltage modules connected in input-series and output-parallel mode so that low-voltage commercial silicon MOSFETs, which usually have low conduction losses and high switching speed, can be adopted. Besides bidirectional power flow capability, the phase-shift dual-half-bridge (DHB) can realize zero-voltage-switching for all the switching devices without auxiliary switch devices, which enables the high switching frequency operation with low switching losses. As a result, high efficiency and high power density can be achieved. Other advantages of DHB topology have also been investigated for this application. A planar transformer adopting printed-circuit-board (PCB) winding is designed to realize high voltage solid isolation and identical parameters in multiple modules. The power loss of each main component has been analyzed for DHB converter under high frequency operation. Finally, the experimental results of two modules operating at 50 kHz switching frequency are presented with 97% efficiency.
机译:本文介绍了模块化双半桥(MDHB)双向DC-DC转换器的发展,作为10 kVA单相固态变压器(SST)的DC-DC级,用于未来的可再生电能分配和智能电源管理系统。 DC-DC转换器连接到与7.2 kV公用电网相接的AC-DC整流器产生的12 kV DC总线,以提供电流隔离功能以及用于直流负载的400 V DC总线。 dc-dc转换器由多个低压模块组成,这些低压模块以输入串联和输出并联模式连接,因此可以采用通常具有低传导损耗和高开关速度的低压商用硅MOSFET。除具有双向潮流功能外,相移双半桥(DHB)可以在没有辅助开关设备的情况下实现所有开关设备的零电压开关,从而实现高开关频率工作且开关损耗低。结果,可以实现高效率和高功率密度。 DHB拓扑的其他优点也已针对该应用进行了研究。设计采用印刷电路板(PCB)绕组的平面变压器,以在多个模块中实现高压固体隔离和相同的参数。已针对DHB转换器在高频操作下的每个主要组件的功率损耗进行了分析。最后,以50%的开关频率工作的两个模块的实验结果以97%的效率给出。

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