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Life cycle prediction of Sealed Lead Acid batteries based on a Weibull model

机译:基于威布尔模型的密封铅酸蓄电池寿命周期预测

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摘要

The performance and life cycle of Sealed Lead Acid (SLA) batteries for Advanced Metering Infrastructure (AMI) application is considered in this paper. Cyclic test and thermal accelerated aging test is performed to analyze the aging mechanism resulting in gradual loss of performance and finally to battery's end of service life. The objective of this study is to confirm design concepts, find the life characteristic and develop standard information on failure rates and mechanisms. Reliability assessment of the SLA is evaluated using different parametric distribution analysis models and best fit distribution is selected based on Anderson–Darling adjustment value. Shape parameter (β), scale parameter (α) and threshold parameter (λ) of the selected Weibull distribution is computed from experimental cycle life test data. Thermally accelerated aging test of SLA is performed and analyzed. Failure times are extrapolated to predict the lifetimes at the desired operational field temperature.
机译:本文考虑了用于高级计量基础架构(AMI)应用的密封铅酸(SLA)电池的性能和寿命周期。进行循环测试和热加速老化测试,以分析导致性能逐渐下降并最终导致电池使用寿命终止的老化机理。这项研究的目的是确认设计概念,找到寿命特征并开发有关故障率和故障机理的标准信息。使用不同的参数分布分析模型评估SLA的可靠性,并根据Anderson-Darling调整值选择最佳拟合分布。根据实验循环寿命测试数据计算出选定的威布尔分布的形状参数(β),比例参数(α)和阈值参数(λ)。进行并分析了SLA的热加速老化测试。推断故障时间,以预测在所需的工作现场温度下的寿命。

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