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Sensor fault diagnosis using a non-homogeneous high-order sliding mode observer with application to a transport aircraft

机译:使用非均匀高阶滑模观测器的传感器故障诊断及其在运输机上的应用

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In avionics and aerospace multisensor systems, reliable and early detection of individual sensor faults present substantial challenges to health monitoring designers of such systems. This study addresses the problem of sensor fault diagnosis. The proposed solution is based on a non-homogeneous high-order sliding mode observer used to estimate the faults, theoretically in finite time and in the presence of bounded disturbances. The sensor faults are estimated for the class of systems satisfying the structural property of strong observability. A key feature of the proposed solution is concerned by the effect that measurement noise could have on fault reconstruction. It is shown that the fault estimation error is bounded in the -norm sense, and an upper bound is theoretically derived. The method is applied to the problem of sensor fault estimation of a large transport aircraft. Simulation results as well as a pilot experiment are presented to demonstrate the potential of the proposed method.
机译:在航空电子和航空航天多传感器系统中,单个传感器故障的可靠和早期检测给此类系统的健康监控设计人员提出了严峻的挑战。这项研究解决了传感器故障诊断的问题。所提出的解决方案基于非均匀的高阶滑模观测器,该观测器用于在理论上在有限时间内和有界干扰的情况下估计故障。对于满足强可观察性结构特性的系统类别,估计传感器故障。所提出解决方案的关键特征是测量噪声可能对故障重建产生的影响。结果表明,故障估计误差在-norm范围内有界,并且理论上推导了一个上限。该方法适用于大型运输机的传感器故障估计问题。仿真结果和初步实验表明了该方法的潜力。

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