Three-dimensional Temperature Field Reconstruction for A Lithium-Ion Battery Pack: A Distributed Kalman Filtering Approach
Ning Tian, Huazhen Fang, Yebin Wang

TL;DR
This paper presents a real-time method for reconstructing the three-dimensional temperature distribution in lithium-ion battery packs using a distributed Kalman filtering approach, enhancing safety and efficiency.
Contribution
It introduces the first real-time 3D temperature field reconstruction method for LiB packs utilizing a distributed Kalman filter to reduce computational complexity.
Findings
Distributed Kalman filtering achieves accuracy comparable to centralized methods.
The approach significantly reduces computational load.
The method enhances safety monitoring of LiB packs.
Abstract
Despite the ever-increasing use across different sectors, the lithium-ion batteries (LiBs) have continually seen serious concerns over their thermal vulnerability. The LiB operation is associated with the heat generation and buildup effect, which manifests itself more strongly, in the form of highly uneven thermal distribution, for a LiB pack consisting of multiple cells. If not well monitored and managed, the heating may accelerate aging and cause unwanted side reactions. In extreme cases, it will even cause fires and explosions, as evidenced by a series of well-publicized incidents in recent years. To address this threat, this paper, for the first time, seeks to reconstruct the three-dimensional temperature field of a LiB pack in real time. The major challenge lies in how to acquire a high-fidelity reconstruction with constrained computation time. In this study, a three-dimensional…
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Taxonomy
TopicsAdvanced Battery Technologies Research · Advanced Battery Materials and Technologies · Advancements in Battery Materials
