Laser & Optoelectronics Progress, Volume. 60, Issue 17, 1706005(2023)

Implantable Fiber Bragg Grating Temperature Sensor Inside Lithium-Ion Battery

Yan Mao1,4, Xinglin Tong2,4、*, Shigang Lu3, and Weida Chu2,4
Author Affiliations
  • 1School of Automation, Wuhan University of Technology, Wuhan 430070, Hubei , China
  • 2National Engineering Research Center for Fiber Optic Sensing Technology and Networks, Wuhan University of Technology, Wuhan 430070, Hubei , China
  • 3Materials Genome Institute, Shanghai University, Shanghai 200444, China
  • 4Rizhao Biomedicine and New Materials Research Institute of Wuhan University of Technology, Rizhao 276826, Shandong , China
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    In the operation of lithium-ion batteries, particularly at the high discharge rate, the temperature of the battery significantly increases owing to heat generation. The most accurate and reliable sensor data for the battery management system (BMS) cannot be obtained by relying solely on temperature monitoring of the surface of individual cells. In-situ monitoring of lithium-ion batteries is one of the most effective methods to prevent the thermal runaway of lithium-ion batteries. A sensor is implanted in the heat source core of the lithium-ion battery, and the temperature change can be sensed immediately. A fiber optic composite temperature sensor is embedded in the inner center of the 18650 cylindrical lithium-ion battery, and the cross sensitivity of temperature and stress inherent in the Bragg grating sensing mechanism is eliminated using the Fabry-Perot (F-P) air cavity on the same fiber. The experimental results show that the internal temperature change of the battery can be monitored in real time in the charge and discharge stages, and the optical fiber sensor is compatible with the internal cell of the battery. This can facilitate the long-term health monitoring of large-scale lithium-ion battery-integrated components.

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    Yan Mao, Xinglin Tong, Shigang Lu, Weida Chu. Implantable Fiber Bragg Grating Temperature Sensor Inside Lithium-Ion Battery[J]. Laser & Optoelectronics Progress, 2023, 60(17): 1706005

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    Paper Information

    Category: Fiber Optics and Optical Communications

    Received: Jun. 4, 2022

    Accepted: Jun. 23, 2022

    Published Online: Aug. 29, 2023

    The Author Email: Tong Xinglin (tongxinglin@whut.edu.cn)

    DOI:10.3788/LOP221764

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