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ON IMPROVING BATTERY STATE OF CHARGE ESTIMATION USING BULK FORCE MEASUREMENTS

机译:散装力测量改善电池充电状态的研究

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Lithium-ion (Li-ion) batteries undergo physical deformation as their state-of-charge (SOC) changes. The physical deformation causes changes in the pressure (equivalently, force) applied at the end-plates of a constrained battery pack or module. This paper proposes the fusion of bulk force and battery voltage measurements to estimate the SOC in Li-ion battery packs. In this paper, using discrete Linear Quadratic Estimators (dLQEs), the advantage of using force measurements in addition to voltage measurement to improve SOC estimates is quantitatively studied through simulations. It is observed that including force measurements can decrease the mean and standard deviation of SOC estimation error by 50% in some SOC intervals.
机译:锂离子电池会随着其充电状态(SOC)的变化而发生物理变形。物理变形会导致施加在受约束的电池组或模块的端板上的压力(等效为力)发生变化。本文提出了结合使用体积力和电池电压测量来估计锂离子电池组中的SOC的方法。在本文中,使用离散线性二次估计器(dLQE),通过模拟定量研究了除了电压测量之外还使用力测量来改善SOC估计的优势。可以看出,在某些SOC间隔内,进行力测量可以将SOC估计误差的平均值和标准偏差降低50%。

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