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SOC and SOH estimation for Li-ion battery based on an equivalent hydraulic model. Part II: SOH power fade estimation

机译:基于等效水力模型的锂离子电池SOC和SOH估计。第二部分:SOH Power Fade估计

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This paper aims at developing a management system for a lithium-ion battery in order to monitor its state-of-health. Based on the electrochemical processes within the battery, state-of-health indicators are deduced from the solid phase diffusion coefficients that describe the propagation of lithium in each electrode. Hence the estimation of these diffusion coefficients is the focus of the paper. The proposed method properly accounts for measurement noise and provides a confidence interval for the estimates. It relies on a three step procedure. A temporal transfer function is first highlighted from the partial differential equation describing the evolution of the lithium concentration inside the particles. Next a nonlinear parameter estimation problem for the transfer function identification is solved by resorting to the so-called simplified refined instrumental variable method. From this first estimation, the diffusion coefficients are then computed. A resampling scheme is used to estimate a confidence interval for the estimated parameters.
机译:本文旨在开发锂离子电池的管理系统,以监测其健康状况。基于电池内的电化学过程,从描述每个电极中锂传播的固相扩散系数推导出健康状态指示剂。因此,这些扩散系数的估计是纸张的焦点。所提出的方法适当地考虑测量噪声并为估计提供置信区间。它依赖于三个步骤程序。首先从描述颗粒内锂浓度的演变的局部微分方程突出显示时间传递函数。接下来,通过诉诸所谓的简化精细的仪器变量方法,解决了传递函数识别的非线性参数估计问题。从该第一估计,然后计算扩散系数。重采样方案用于估计估计参数的置信区间。

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