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Functional analysis of Battery Management Systems using multi-cell HIL simulator

机译:使用多单元HIL模拟器的电池管理系统的功能分析

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Developers and manufacturers of Battery Management Systems (BMSs) require extensive testing of controller HW and SW, such as analog front-end (AFE) and performance of generated control code. In comparison with tests conducted on real batteries, tests conducted on hardware-in-the-loop (HIL) simulator may be more cost ant time effective, easier to reproduce and safer beyond the normal range of operation, especially at early stages in the development process or during fault simulation. In this paper a li-ion battery (LIB) electro-thermal multi-cell model coupled with an aging model is designed, characterized and validated based on experimental data, converted to C code and emulated in real-time with a dSpace HIL simulator. The BMS to be tested interacts with the emulated battery pack as if it was managing a real battery pack. BMS functions such as protection, measuring of current, voltage and temperature or balancing are tested on real-time experiments.
机译:电池管理系统(BMS)的开发人员和制造商需要对控制器的硬件和软件进行广泛的测试,例如模拟前端(AFE)和生成的控制代码的性能。与在真实电池上进行的测试相比,在硬件在环(HIL)仿真器上进行的测试可能更具成本效益,更易于重现,并且在正常操作范围之外更安全,尤其是在开发的早期阶段过程或故障仿真期间。本文根据实验数据设计,表征和验证了锂离子电池(LIB)电热多电池模型,并结合了老化模型,将其转换为C代码并使用dSpace HIL模拟器进行了实时仿真。要测试的BMS与模拟的电池组交互,就好像它在管理真实的电池组一样。 BMS功能(例如保护,电流,电压和温度测量或平衡)在实时实验中进行测试。

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