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Development of a WBG-based Transformerless Electric Vehicle Charger with Semiconductor Isolation

机译:具有半导体隔离的基于WBG的无变压器电动汽车充电器的开发

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This paper presents discussions on the design of Semiconductor-based galvanic isolation (SGI)-based vehicle on-board battery chargers. SGI is a paradigm shift compared to traditional transformer-based solutions by using switched capacitor circuits to realize galvanic isolation. Two major SGI-based battery charger topologies are compared, and a two-stage Totem-pole + SGI dc/dc solution is selected due to higher efficiency. Based on the topology, the touch current (TC) issue is modelled and analyzed, and a buck-boost-based active compensation circuit is proposed with local sensing and control. At last, a 2-kW SGI charger is prototyped and tested, and the efficiency of the dc/dc stage maintains above 98%. With the proposed touch current compensation circuit, the charger meets the safety standards by passing the TC test.
机译:本文介绍了有关基于半导体的电流隔离(SGI)的车辆车载电池充电器设计的讨论。与传统的基于变压器的解决方案相比,SGI是一种范式转变,通过使用开关电容器电路来实现电流隔离。比较了两种基于SGI的主要电池充电器拓扑,并且由于效率更高而选择了两级图腾柱+ SGI dc / dc解决方案。基于该拓扑,对触摸电流(TC)问题进行建模和分析,并提出了一种基于降压-升压型的有源补偿电路,该电路具有局部感应和控制功能。最后,对2kW SGI充电器进行了原型设计和测试,并且dc / dc级的效率保持在98%以上。通过提出的触摸电流补偿电路,充电器通过了TC测试,符合安全标准。

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