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A Simplified Monitor Model for EMA Prognostics

机译:EMA预测的简化监视模型

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The complexity of aircraft systems is steadily growing, allowing the machine to perform an increasing number of functions; this can result in a multitude of possible failure modes, sometimes difficult to foresee and detect. A prognostic tool to identify the early signs of faults and perform an estimation of Remaining Useful Life (RUL) can allow adaptively scheduling maintenance interventions, reducing the operating costs and increasing safety [1-4]. A first step for the RUL estimation is an accurate Fault Detection & Identification (FDI) to infer the system health status, necessary to determine when the components will no more be able to match their requirements [5]. With a model-based approach, the FDI is a model-matching problem, intended to adjust a parametric Monitor Model (MM) to reproduce the response of the system. The MM shall feature a low computational cost to be executed iteratively on-board; at the same time, it shall be detailed enough to account for a several failure modes [6]. We propose the simplification of an Electromechanical Actuator (EMA) dynamical model [7] for model-based FDI, focusing on the BLDC motor and Power Electronics, which account for most the computational cost of the original high fidelity model.
机译:飞机系统的复杂性稳步增长,允许机器执行越来越多的功能;这可能导致多种可能的故障模式,有时难以预见并检测。预后工具,用于识别故障的早期迹象并执行剩余使用寿命(RUL)的估计可以允许自适应地调度维护干预,降低运营成本和增加安全性[1-4]。 RUL估计的第一步是准确的故障检测和识别(FDI),以推断系统运行状况,以确定组件何时不能匹配其要求[5]。通过基于模型的方法,FDI是模型匹配问题,旨在调整参数显示模型(mm)以再现系统的响应。 MM应采用低计算成本迭代地在板上执行;与此同时,它应详细介绍几种故障模式[6]。我们建议简化基于模型的FDI的机电致动器(EMA)动态模型[7],专注于BLDC电机和电力电子设备,这占原始高保真模型的大多数计算成本。

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