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Particle Filter-Based Prognostics for an Electrolytic Capacitor Working in Variable Operating Conditions

机译:基于颗粒过滤器的电解电容器在可变工作条件下的预测

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Prognostic models should properly take into account the effects of operating conditions on the degradation process and on the signal measurements used for monitoring. In this paper, we develop a particle filter-based (PF) prognostic model for the estimation of the remaining useful life (RUL) of aluminum electrolytic capacitors used in electrical automotive drives, whose operation is characterized by continuously varying conditions. The capacitor degradation process, which remarkably depends on the temperature experienced by the component, is typically monitored by observing the capacitor equivalent series resistance (ESR). However, the ESR measurement is influenced by the temperature at which the measurement is performed, which changes depending on the operating conditions. To address this problem, we introduce a novel degradation indicator independent from the measurement temperature. Such indicator can, then, be used for the prediction of the capacitor degradation and its RUL. For this, we develop a particle filter prognostic model, whose performance is verified on data collected in simulated and experimental degradation tests.
机译:预后模型应适当考虑操作条件对降解过程和用于监测的信号测量的影响。在本文中,我们开发了一种基于颗粒过滤器(PF)的预测模型,用于估计电动汽车驱动器中铝电解电容器的剩余使用寿命(RUL),其工作特征是不断变化的条件。通常通过观察电容器等效串联电阻(ESR)来监视电容器退化过程,该过程主要取决于组件所经历的温度。但是,ESR测量受执行测量的温度的影响,该温度根据操作条件而变化。为了解决这个问题,我们引入了一种与测量温度无关的新型降解指示剂。然后,可以将这种指示器用于电容器退化及其RUL的预测。为此,我们开发了一个粒子过滤器预测模型,该模型的性能已通过在模拟和实验退化测试中收集的数据进行了验证。

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