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Battery management system with active inrush current control for Li-ion battery in light electric vehicles

机译:轻型电动汽车的锂离子电池具有主动浪涌电流控制的电池管理系统

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摘要

This paper presents a design concept of integrating an inrush current control function into a battery management system (BMS) for Li-ion battery used in light electric vehicles. The proposed concept exploits the existing discharge MOSFET, which has the primary function as an electronic circuit breaker, for the secondary function as an inrush current limiter. The proposed inrush current control function is implemented as an adaptation based on an existing BMS platform. The gate control circuit is redesigned together with an adaptation of the BMS software. Both hardware and software adaptations do not lead to any significant increase in material costs. The major technical challenge of the proposed concept is finding an appropriate trade-off design between the performances of two functions, cutting off circuit and limiting inrush current. The design procedures are presented along with technical discussions for making design compromises. At the end, the functionality of the proposed technique is validated by experimental results.
机译:本文提出了将浪涌电流控制功能集成到轻型电动汽车所用锂离子电池的电池管理系统(BMS)中的设计概念。提出的概念利用了现有的放电MOSFET,其主要功能是作为电子断路器,而次要功能是作为浪涌电流限制器。所提出的浪涌电流控制功能被实现为基于现有BMS平台的一种适配。重新设计了栅极控制电路,并改编了BMS软件。硬件和软件的改编都不会导致材料成本的显着增加。提出的概念的主要技术挑战是在两种功能的性能之间找到合适的折衷设计,即切断电路和限制浪涌电流。提出了设计程序以及进行技术折衷的技术讨论。最后,通过实验结果验证了所提出技术的功能。

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