An Isolation Circuit based Charging and Discharging Model of On-Board Charger in Electric Vehicle

Venkata Kishore Podamekala, V. Sandeep
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Abstract

A couple of hybrid electric vehicles (HEV) predominantly two-wheelers led to fire accidents, which will injure humans or lost their life. The probable cause of the fire is because of the non-isolation of abnormalities and instability in the charge and discharge cycle of electric vehicle batteries as a part of the battery management system (BMS). A battery is one of the sources of electrical energy, by using power electronic converters it can store or retain the electrical energy. Battery isolation is more important to protect against low output voltage or cell voltage and excessive charging current. The battery's charge level in perspective of its capacity is nothing but a state of charge (SOC). It is an important metric for evaluating battery storage systems. Because of the scalability and portability of cells along with inherent high charge-discharge cycles for the use of electric vehicles (EV), it is important to conFigure the isolated charging and discharging model (CDM) of batteries as a part of BMS. The growing number of electric vehicles improves the technological parameters of OBCs. Due to limitations in interior space availability, it has to keep in mind to incorporate the effective CDM into OBC. This paper developed the simulation circuit of an OBC with isolated CDM and the obtained results are analyzed.
基于隔离电路的电动汽车车载充电器充放电模型
以两轮车为主的混合动力电动汽车(HEV)发生了多起严重的人身伤亡事故。火灾的原因可能是作为电池管理系统(BMS)的一部分,电动汽车电池在充放电周期中的异常和不稳定没有被隔离。电池是电能的来源之一,通过使用电力电子转换器可以储存或保留电能。电池隔离更重要的是防止低输出电压或电池电压和过大的充电电流。从电池容量的角度来看,电池的充电水平只不过是充电状态(SOC)。它是评价蓄电池储能系统的一个重要指标。由于电池的可扩展性和便携性以及电动汽车(EV)固有的高充放电周期,因此将电池的隔离充放电模型(CDM)配置为BMS的一部分非常重要。越来越多的电动汽车提高了OBCs的技术参数。由于内部空间可用性的限制,必须牢记将有效的CDM纳入OBC。本文研制了带隔离CDM的OBC仿真电路,并对仿真结果进行了分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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