4.6 Review

Fiber Optic Sensing Technologies for Battery Management Systems and Energy Storage Applications

Journal

SENSORS
Volume 21, Issue 4, Pages -

Publisher

MDPI
DOI: 10.3390/s21041397

Keywords

fiber optic sensor; fiber Bragg grating; temperature monitoring; thermal runaway; battery management systems; Li-ion battery; electric vehicle; cost estimation

Funding

  1. Grid Modernization Initiative of the U.S. Department of Energy (DOE) as part of its Grid Modernization Laboratory Consortium

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The use of fiber optic sensors in battery monitoring is increasing due to the demand for enhanced battery management systems with accurate state estimations. This review explores the advancements in practical implementation of internal and external parameter measurements in batteries, as well as the challenges and future prospects of integrating fiber optics into high-value battery applications.
Applications of fiber optic sensors to battery monitoring have been increasing due to the growing need of enhanced battery management systems with accurate state estimations. The goal of this review is to discuss the advancements enabling the practical implementation of battery internal parameter measurements including local temperature, strain, pressure, and refractive index for general operation, as well as the external measurements such as temperature gradients and vent gas sensing for thermal runaway imminent detection. A reasonable matching is discussed between fiber optic sensors of different range capabilities with battery systems of three levels of scales, namely electric vehicle and heavy-duty electric truck battery packs, and grid-scale battery systems. The advantages of fiber optic sensors over electrical sensors are discussed, while electrochemical stability issues of fiber-implanted batteries are critically assessed. This review also includes the estimated sensing system costs for typical fiber optic sensors and identifies the high interrogation cost as one of the limitations in their practical deployment into batteries. Finally, future perspectives are considered in the implementation of fiber optics into high-value battery applications such as grid-scale energy storage fault detection and prediction systems.

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