Design and development of dual mode on-board battery charger for electric vehicle

Hemalatha Jeekanahalli Nanjappa, Sunanda Channaiah
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Abstract

In recent days there is growing interest in electric vehicle (EVs) technologies because of concern about global warming, energy crisis and security. Charging configurations of EVs play a vital role in the development of automobile transformation. Hence in an automobile industry increased demand of EVs require an efficient and reliable system for recharging the battery. This paper presents a topology that interface the two types of charging systems i.e. slow charging and fast charging as required by the user. TESLA S60 battery model is taken as an example for validation of the proposed topology in simulation. Cuk converter is designed and implemented for charging the battery in two modes. The MATLAB/Simulink software is used to simulate and analyze the performance of the system. The prototype hardware model of the charger is developed and results are validated with simulation. The results show that the slow charging 86% and fast charging efficiency is more than 82%.
电动汽车车载双模电池充电器的设计与开发
近年来,由于对全球变暖、能源危机和安全的担忧,人们对电动汽车技术的兴趣日益浓厚。电动汽车的充电配置对汽车转型的发展起着至关重要的作用。因此,在汽车工业中,对电动汽车的需求不断增加,需要一种高效可靠的电池充电系统。本文提出了一种拓扑结构,该拓扑结构可根据用户需要连接两种类型的充电系统,即慢速充电和快速充电。以特斯拉S60电池模型为例,在仿真中验证了所提拓扑的有效性。设计并实现了两种充电模式下的Cuk变换器。利用MATLAB/Simulink软件对系统的性能进行仿真和分析。建立了充电器的原型硬件模型,并通过仿真对结果进行了验证。结果表明,慢充效率达86%,快充效率达82%以上。
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