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Design and Implementation of a High-efficiency DC/DC Converter for EVs Charging Basing on LLC Resonant Topology and Silicon-Carbide Devices

机译:基于LLC谐振拓扑和碳化硅器件的EV充电高效DC / DC转换器的设计与实现

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Electric Vehicles (EVs) have developed greatly under the government supporting to relieve energy crisis and pollution issues in recent years. However, there still a problem to restrict further development of EVs is that how to efficient and fast charging for them. So, a kind of owns high-output-power and high-efficiency charging module may be a useful key to solve the problem. However, the conventional charging modules with using Silicon (Si) devices couldn't own high efficiency, because there are a lot of power losses caused by power semiconductors and magnetic devices. Hence, reducing the amount of power semiconductors and magnetic devices to decrease power loss is a useful way to realize high efficiency. Therefore, according to the idea, this paper plans to design and implement a 15kWDC/DC converter charging for EVs with LLC resonant topology and Silicon-Carbide (SiC) devices to realize high efficiency, the proposed converter could reach to about 98.4% which calculated at rated full-load condition. And some detailed comparison between the conventional converter and proposed converter about conversion efficiency and other aspects shown at the section-II in this paper.
机译:近年来,在政府的支持下,电动汽车(EV)取得了长足发展,以缓解能源危机和污染问题。但是,仍然存在限制电动汽车进一步发展的问题,即如何为电动汽车高效和快速充电。因此,一种拥有高输出功率和高效率的充电模块可能是解决该问题的有用钥匙。但是,传统的使用硅(Si)器件的充电模块无法实现高效率,因为功率半导体和磁性器件会导致很多功率损耗。因此,减少功率半导体和磁性器件的数量以减少功率损耗是实现高效率的有用方法。因此,根据该想法,本文计划为具有LLC谐振拓扑和碳化硅(SiC)器件的电动汽车设计并实现15kWDC / DC转换器充电,以实现高效率,拟议的转换器可达到约98.4%,在额定满载条件下。并在常规转换器和建议的转换器之间进行了一些详细的比较,其中涉及转换效率以及本文第二部分所示的其他方面。

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