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Remaining useful life assessment of lithium-ion batteries in implantable medical devices

机译:植入式医疗设备中锂离子电池的剩余使用寿命评估

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This paper presents a prognostic study on lithium-ion batteries in implantable medical devices, in which a hybrid data-driven/model-based method is employed for remaining useful life assessment. The method is developed on and evaluated against data from two sets of lithium-ion prismatic cells used in implantable applications exhibiting distinct fade performance: 1) eight cells from Medtronic, PLC whose rates of capacity fade appear to be stable and gradually decrease over a 10-year test duration; and 2) eight cells from Manufacturer X whose rates appear to be greater and show sharp increase after some period over a 1.8-year test duration. The hybrid method enables online prediction of remaining useful life for predictive maintenance/control. It consists of two modules: 1) a sparse Bayesian learning module (data-driven) for inferring capacity from charge-related features; and 2) a recursive Bayesian filtering module (model-based) for updating empirical capacity fade models and predicting remaining useful life. A generic particle filter is adopted to implement recursive Bayesian filtering for the cells from the first set, whose capacity fade behavior can be represented by a single fade model; a multiple model particle filter with fixed-lag smoothing is proposed for the cells from the second data set, whose capacity fade behavior switches between multiple fade models.
机译:本文介绍了可植入医疗设备中锂离子电池的预后研究,其中采用了基于数据驱动/基于模型的混合方法来评估使用寿命。该方法是根据用于可植入应用中的两组锂离子棱柱形电池的数据开发并评估的,这些数据显示出独特的褪色性能:1)来自Medtronic,PLC的八个电池,其容量褪色速率似乎稳定并在10倍内逐渐降低年考试时间;和2)来自制造商X的八个单元格,其速率似乎更高,并且在1.8年的测试期内经过一段时间后显示出急剧增加。混合方法可以在线预测剩余使用寿命,以进行预测性维护/控制。它由两个模块组成:1)稀疏贝叶斯学习模块(数据驱动),用于从与充电相关的功能中推断容量; 2)递归贝叶斯滤波模块(基于模型),用于更新经验容量衰减模型并预测剩余使用寿命。采用通用粒子滤波器对第一组电池进行递归贝叶斯滤波,其容量衰减行为可以用单个衰减模型表示。针对来自第二个数据集的单元格,提出了一种具有固定滞后平滑的多模型粒子滤波器,其容量衰落行为在多个衰落模型之间切换。

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