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Distributed thermal monitoring of lithium ion batteries with optical fibre sensors

机译:具有光纤传感器的锂离子电池的分布式热监测

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Real-time temperature monitoring of li-ion batteries is widely regarded within the both the academic literature and by the industrial community as being a fundamental requirement for the reliable and safe operation of battery systems. This is particularly evident for larger format pouch cells employed in many automotive or grid storage applications. Traditional methods of temperature measurement, such as the inclusion of individual sensors mounted at discrete locations on the surface of the cell may yield incomplete information. In this study, a novel Rayleigh scattering based optical fibre sensing technology is proposed and demonstrated to deliver a distributed, real-time and accurate measure of temperature that is suitable for use with Li-ion pouch cells. The thermal behaviour of an A5-size pouch cell is experimentally investigated over a wide range of ambient temperatures and electrical load currents, during both charge and discharge. A distributed fibre optical sensor (DFOS) is used to measure both the in-plane temperature difference across the cell surface and the movement of the hottest region of the cell during operation, where temperature difference is the difference of temperature amongst different measuring points. Significantly, the DFOS results highlight that the maximum in-plane temperature difference was found to be up to 307% higher than that measured using traditional a thermocouple approach.
机译:Li-离子电池的实时温度监测广泛地认为在学术文献和工业界之外,是电池系统可靠和安全运行的根本要求。这对于许多汽车或电网存储应用中使用的较大格式的袋细胞特别明显。传统的温度测量方法,例如安装在电池表面上的离散位置的单独传感器可以产生不完整的信息。在本研究中,提出了一种新颖的瑞利散射散射光纤传感技术,并证明了适合与锂离子袋细胞使用的分布式,实时和精确的温度测量。在充电和放电期间,在各种环境温度和电负载电流上通过实验研究A5尺寸袋细胞的热行为。分布式光纤光学传感器(DFOS)用于测量细胞表面上的面内温度差和电池的最热区域在操作期间的运动,其中温差是不同测量点之间的温度差异。值得注意的是,DFOS结果突出显示最大面内温差比使用传统热电偶方法测量的最大面内温差高达307%。

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