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首页> 外文期刊>IEEE Transactions on Control Systems Technology >Model-Based Battery Thermal Fault Diagnostics: Algorithms, Analysis, and Experiments
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Model-Based Battery Thermal Fault Diagnostics: Algorithms, Analysis, and Experiments

机译:基于模型的电池热故障诊断:算法,分析和实验

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摘要

Safety and reliability remain critical issues for lithium-ion (Li-ion) batteries. Out of many possible degradation modes, thermal faults constitute a significant part of critical causes that lead to battery degradation and failure. Therefore, it is extremely important to diagnose these thermal faults in real time to ensure battery safety. Motivated by this fact, we propose a partial differential equation (PDE) model-based real-time scheme in this paper for diagnosing thermal faults in Li-ion batteries. The objective of the diagnostic scheme is to detect and estimate the size of the thermal fault. We utilize a distributed parameter 1-D thermal model for cylindrical battery cells in conjunction with PDE observer-based techniques to design the scheme. Furthermore, we apply threshold-based technique to ensure robustness against modeling and measurement uncertainties. The effectiveness of the scheme is illustrated by: 1) analytical convergence verification of the PDE observers under heathy and faulty conditions utilizing Lyapunov stability theory; 2) extensive simulation case studies; 3) robustness analysis against model parametric uncertainties; and 4) experimental studies on a commercial Li-ion battery cell.
机译:安全性和可靠性仍然是锂离子(Li-ion)电池的关键问题。在许多可能的退化模式中,热故障是导致电池退化和故障的关键原因的重要组成部分。因此,实时诊断这些热故障以确保电池安全非常重要。基于这一事实,本文提出了一种基于偏微分方程(PDE)模型的实时方案,用于诊断锂离子电池的热故障。诊断方案的目的是检测和估计热故障的大小。我们结合基于PDE观测器的技术,为圆柱形电池单元使用分布式参数1-D热模型来设计方案。此外,我们应用基于阈值的技术来确保针对建模和测量不确定性的鲁棒性。该方案的有效性体现在:1)利用李雅普诺夫稳定性理论对在炎热和有故障条件下的偏微分方程观测者进行分析收敛验证; 2)广泛的模拟案例研究; 3)针对模型参数不确定性的鲁棒性分析; 4)对商用锂离子电池的实验研究。

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