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Battery management technology for an electric vehicle

机译:电动汽车的电池管理技术

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摘要

Electric vehicles are expected to occupy a significant portion of the automotive market share in the near future. An electric vehicle has only an electric drive-train powered by a battery, and an electric vehicle should provide a dozens of mile driving distance with single recharge of the battery. The cost and performance of the electric vehicle is primarily determined by the battery and its management system. In this talk, we focus on one of the most promising secondary batteries, a Li-ion battery, and its management system that fulfill both cost and performance requirements. The goal of battery and its management technology is to extend the battery lifetime as well as to guarantee safe operation. We introduce key state-of-the-art solutions for the battery and management system together with an in-vehicle network technology. The battery management software is running on the top of a real-time operating system, such as OSEK, for robust operation and potability. We provide fast communication with a high-speed CAN (control-area network) among the battery management system and other vehicle electronics. The management software is designed to be reprogrammed though the CAN channel. We propose a master-slave architecture, which is scalable to accommodate more number of battery cells to manage. Monitoring Measures pack voltage, pack current and pack temperature. Reports cell voltage and cell temperature. Diagnostics Detects and reports over- and under-voltage, temperature and current. Checks leakage current using an active isolation method. Cell Balancing Provides a method for precise cell balancing. Communications Transmits measured data and diagnostic statuses over two 500 kbps CAN ports. Reprogramming Reprograms all the software components over the CAN ports for service purpose.
机译:预计在不久的将来,电动汽车将占据汽车市场很大一部分份额。电动汽车仅具有由电池驱动的电动传动系统,而电动汽车应在一次充电的情况下提供数十英里的行驶距离。电动汽车的成本和性能主要取决于电池及其管理系统。在本次演讲中,我们将重点介绍最有前途的二次电池,锂离子电池及其管理系统,该系统可同时满足成本和性能要求。电池及其管理技术的目标是延长电池寿命并确保安全操作。我们介绍了电池和管理系统的关键最新技术解决方案,以及车载网络技术。电池管理软件运行在实时操作系统(例如OSEK)的顶部,以实现稳定的运行和便携性。我们通过电池管理系统和其他车辆电子设备之间的高速CAN(控制区域网络)提供快速通信。该管理软件旨在通过CAN通道进行重新编程。我们提出了一种主从架构,该架构可扩展以容纳更多数量的要管理的电池。监视测量电池组电压,电池组电流和电池组温度。报告电池电压和电池温度。诊断检测并报告过压和欠压,温度和电流。使用有源隔离方法检查泄漏电流。电池电量平衡提供一种用于精确电池电量平衡的方法。通信通过两个500 kbps CAN端口传输测量数据和诊断状态。重新编程为服务目的,对CAN端口上的所有软件组件进行重新编程。

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