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Fault Detection and Basic In-Flight Reconfiguration of a Small UAV Equipped with Elevons ?

机译:配备了Elevons的小型无人机的故障检测和基本机上重配置

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The paper introduces the in-flight fault detection and basic reconfiguration of a small unmanned aerial vehicle equipped with two elevons and an electric motor. The considered fault scenario is one control surface stuck at a given position during straight and level flight. The fault detection is solved with Multiple Model Adaptive Estimation considering non-faulty and faulty (left or right surface stuck) system models. Basic reconfiguration to stabilize the flight against atmospheric disturbances is done applying the remaining surface in the lateral channel and the total energy control concept to hold the airspeed and altitude between acceptable limits in the longitudinal channel. Promising results are achieved in software-in-the-loop simulation with the fault detection and reconfiguration.
机译:本文介绍了配备有两个电子元件和一个电动机的小型无人机的飞行中故障检测和基本配置。所考虑的故障场景是在直线和水平飞行期间一个控制面卡在给定位置。故障检测通过考虑非故障和故障(左右表面卡住)系统模型的多模型自适应估计来解决。使用侧向通道中的其余表面和总能量控制概念来进行基本的重新配置,以稳定飞行免受大气干扰,从而将空速和高度保持在纵向通道中的可接受极限之间。具有故障检测和重新配置功能的软件在环仿真中获得了可喜的结果。

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