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Experimental set-up and procedures to test and validate battery fuel gauge algorithms

机译:实验设置和程序以测试和验证电池电量计算法

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摘要

A battery fuel gauge (BFG) helps to extend battery life by tracking the state of charge (SOC) and many other diagnostic features. In this paper, we present an approach to validate the SOC and time-to-shutdown (US) estimates of a BFG. Hardware-in-the-loop (HIL) testing under realistic usage scenarios provides a means for BFG algorithm evaluation and provides insights into practical implementation and testing of BFG algorithms in battery management systems. We report the details of a HIL system that was designed to validate the SOC and US estimation capability of BFG algorithms; different current load profiles were synthesized to replicate typical battery usage in portable electronic applications; the HIL system is automated with the help of programmable current profiles and is designed to operate at various controlled temperatures; three performance validation metrics are formulated for an objective assessment of SOC and ITS tracking algorithms. The HIL setup and the performance validation metrics are used to evaluate a BFG developed by the authors using three different batteries at temperatures ranging from -20 degrees C to 40 degrees C. (C) 2015 Elsevier Ltd. All rights reserved.
机译:电池电量计(BFG)通过跟踪充电状态(SOC)和许多其他诊断功能来帮助延长电池寿命。在本文中,我们提出了一种验证BFG的SOC和停机时间(US)估计的方法。在实际使用场景下进行的硬件在环(HIL)测试为BFG算法评估提供了一种方法,并为电池管理系统中BFG算法的实际实现和测试提供了见识。我们报告了旨在验证BFG算法的SOC和US估计能力的HIL系统的详细信息;合成了不同的电流负载曲线,以复制便携式电子应用中的典型电池使用情况; HIL系统在可编程电流曲线的帮助下实现了自动化,并设计为在各种受控温度下运行;制定了三个性能验证指标,用于客观评估SOC和ITS跟踪算法。 HIL设置和性能验证指标用于评估作者使用三种不同电池在-20摄氏度至40摄氏度的温度范围内开发的BFG。(C)2015 Elsevier Ltd.保留所有权利。

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