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Traction Battery and Battery Control Unit Development

机译:牵引电池和电池控制单元开发

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The performance of high voltage batteries is the key factor for further success of electric vehicles. The primary areas for battery development include high voltage (HV) and functional safety, maximum power and usable energy, battery life, packaging and weight reduction. This paper explains the development of the HV battery and the battery management system for the FEV Liona fleet, a retrofit of a pure electric powertrain into a FIAT 500. The multi-disciplinary process used to develop this program includes electrical, mechanical and functional aspects. The layout of the electrical system includes cell selection, layout of modules and the interconnection of twelve modules to a battery pack. The mechanical design of mounting the battery under the floor addresses the housing issues regarding robustness and sealing, the packaging into the vehicle as well as the positioning of the HV components inside the battery. The key functional aspects include safety-relevant functionalities, such as isolation monitoring or emergency disconnect. Additional functions of the battery controller include cell balancing, charging and secure communication with other vehicle controllers. The fleet tests conducted as a part of this program provided valuable bench and performance data for analyzing the battery and its components.
机译:高压电池的性能是电动车辆进一步成功的关键因素。电池开发的主要区域包括高压(HV)和功能安全性,最大功率和可用的能量,电池寿命,包装和重量减少。本文解释了HV电池和FEV Liona Fleet的电池管理系统的开发,将纯电动动力驱动器进入菲亚特500的改装。用于开发该程序的多学科流程包括电气,机械和功能方面。电气系统的布局包括小区选择,模块布局和12个模块到电池组的互连。将电池安装在地板下的机械设计解决了关于鲁棒性和密封的壳体问题,将包装到车辆中以及电池内部的HV部件的定位。关键功能方面包括安全相关功能,例如隔离监测或紧急断开连接。电池控制器的附加功能包括与其他车辆控制器的单元平衡,充电和安全通信。作为该计划的一部分进行的舰队测试提供了有价值的台阶和性能数据,用于分析电池及其组件。

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