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Thermal Fault-Detection method and analysis of peripheral systems for large battery packs

机译:大电池组外围系统的热故障检测方法和分析

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摘要

Complex electrical systems such as battery packs are pushed further to comply with the continuously rising demands for power, energy and safety. This triangle of requirements needs to be optimized in all three directions, but has to be well balanced using as much information about the battery's parameters, such as temperature. Today's battery packs lack of gapless temperature acquisition due to a limited sensor count. To increase the temperature information count and herewith the safety, additional sensors would need to be installed, which is rather expensive. A different approach is provided in this paper: Already existent wire harnesses are put into a secondary use to acquire thermal hotspots. Additionally, the proposed method allows to localize the thermal event which leads to a more detailed knowledge of battery pack's thermal situation. By accomplishing a gapless temperature supervision, the mentioned requirement triangle can be further optimized to match future application demands.
机译:诸如电池组的复杂电气系统进一步推动以符合​​对电力,能量和安全性的不断增加的需求。这种要求的三角形需要在所有三个方向上进行优化,但必须使用关于电池参数的信息,例如温度。由于传感器数量有限,今天的电池组缺乏无间断的温度采集。为了提高温度信息计数,在此,需要安装额外的传感器,这是相当昂贵的。本文提供了一种不同的方法:已经存在的线束放入次要用途中以获取热热点。另外,该方法允许本地化热事件,这导致了更详细的电池组热能识别。通过实现无间隙温度监控,可以进一步优化所提到的要求三角形以匹配未来的应用需求。

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