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Virtual Sensor for Failure Detection Identification and Recovery in the Transition Phase of a Morphing Aircraft

机译:用于变形飞机过渡阶段的故障检测识别和恢复的虚拟传感器

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摘要

The Helicopter Adaptive Aircraft (HADA) is a morphing aircraft which is able to take-off as a helicopter and, when in forward flight, unfold the wings that are hidden under the fuselage, and transfer the power from the main rotor to a propeller, thus morphing from a helicopter to an airplane. In this process, the reliable folding and unfolding of the wings is critical, since a failure may determine the ability to perform a mission, and may even be catastrophic. This paper proposes a virtual sensor based Fault Detection, Identification and Recovery (FDIR) system to increase the reliability of the HADA aircraft. The virtual sensor is able to capture the nonlinear interaction between the folding/unfolding wings aerodynamics and the HADA airframe using the navigation sensor measurements. The proposed FDIR system has been validated using a simulation model of the HADA aircraft, which includes real phenomena as sensor noise and sampling characteristics and turbulence and wind perturbations.
机译:直升机自适应飞机(HADA)是一种变形飞机,能够像直升机一样起飞,并且在向前飞行时,展开隐藏在机身下方的机翼,并将动力从主旋翼传递至螺旋桨,因此从直升机变成飞机。在此过程中,机翼的可靠折叠和展开至关重要,因为故障可能决定执行任务的能力,甚至可能造成灾难性后果。本文提出了一种基于虚拟传感器的故障检测,识别和恢复(FDIR)系统,以提高HADA飞机的可靠性。虚拟传感器能够使用导航传感器测量值来捕获折叠/展开机翼空气动力学与HADA机身之间的非线性相互作用。所提出的FDIR系统已经使用HADA飞机的仿真模型进行了验证,该模型包括传感器噪声,采样特性以及湍流和风扰动等真实现象。

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