基于光谱透射比的锂离子电池光纤传感器交叉影响自补偿

F. Rittweger, Christian Modrzynski, P. Schiepel, K. Riemschneider
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引用次数: 2

摘要

本文讨论了用于锂离子电池状态监测的光纤传感器产业化的一些主要障碍和解决方案。我们提出了基于通过光纤的透射光强度作为电荷状态指示器的测量结果。电池是用商业电极在袋状电池装置中制造的。为了补偿交叉影响,稳定测量信号对制造公差的影响,引入了一种参考方法。因此,在不同波长的透射光强度的比率进行评估,以避免使用绝对值。所得的传动比与各种c -速率下的电荷状态一致。最后,讨论了采用廉价led和光电晶体管实现工业应用的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Self-Compensation of Cross Influences using Spectral Transmission Ratios for Optical Fiber Sensors in Lithium-Ion Batteries
In this paper, we discuss some major obstacles and solutions towards an industrialization of optical fiber sensors for cell state monitoring of lithium-ion batteries. We present measurement results based on transmitted light intensities through the optical fiber as indicator for the state of charge. Cells are built with commercial electrodes in a pouch cell setup. To compensate for cross influences and stabilize the measuring signal against manufacturing tolerances, a referencing method is introduced. Thus, ratios of transmitted light intensities at different wavelengths are evaluated to avoid the use of absolute values. The obtained transmission ratios are in good agreement with the state of charge for various C-rates. Finally, possibilities towards an industrial implementation with inexpensive LEDs and phototransistors are discussed.
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