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首页> 外文期刊>IEEE Transactions on Control Systems Technology >Real-Time Capacity Estimation of Lithium-Ion Batteries Utilizing Thermal Dynamics
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Real-Time Capacity Estimation of Lithium-Ion Batteries Utilizing Thermal Dynamics

机译:热动力学利用锂离子电池的实时容量估计

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摘要

Increasing longevity remains one of the open challenges for Lithium-ion (Li-ion) battery technology. We envision a health-conscious advanced battery management system, which implements monitoring and control algorithms that increase battery lifetime while maintaining performance. For such algorithms, real-time battery capacity estimates are crucial. In this paper, we present an online capacity estimation scheme for Li-ion batteries. The key novelty lies in: 1) leveraging thermal dynamics to estimate battery capacity and 2) developing a hierarchical estimation algorithm with provable convergence properties. The algorithm consists of two stages working in cascade. The first stage estimates battery core temperature and heat generation based on a two-state thermal model, and the second stage receives the core temperature and heat generation estimation to estimate state-of-charge and capacity. Results from numerical simulations and experimental data illustrate the performance of the proposed capacity estimation scheme.
机译:延长寿命仍然是锂离子(锂离子)电池技术的开放挑战之一。我们设想了一种健康的先进电池管理系统,实现了监控和控制算法,在保持性能的同时增加电池寿命。对于这种算法,实时电池容量估计至关重要。本文介绍了锂离子电池的在线容量估计方案。关键新颖性在于:1)利用热动力学来估计电池容量和2)具有可提供的可提供收敛性的分层估计算法。该算法包括在级联工作的两个阶段。第一阶段估计基于两个状态热模型的电池核心温度和发热,第二级接收核心温度和发热估计以估计充电状态和容量。数值模拟的结果和实验数据说明了所提出的能力估计方案的性能。

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