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Aircraft Loss-of-Control Accident Prevention: Switching Control of the GTM Aircraft with Elevator Jam Failures

机译:飞机失控事故预防:带有电梯卡纸故障的GTM飞机的开关控制

摘要

Switching control, servomechanism, and H2 control theory are used to provide a practical and easy-to-implement solution for the actuator jam problem. A jammed actuator not only causes a reduction of control authority, but also creates a persistent disturbance with uncertain amplitude. The longitudinal dynamics model of the NASA GTM UAV is employed to demonstrate that a single fixed reconfigured controller design based on the proposed approach is capable of accommodating an elevator jam failure with arbitrary jam position as long as the thrust control has enough control authority. This paper is a first step towards solving a more comprehensive in-flight loss-of-control accident prevention problem that involves multiple actuator failures, structure damages, unanticipated faults, and nonlinear upset regime recovery, etc.
机译:切换控制,伺服机构和H2控制理论用于为执行器卡纸问题提供实用且易于实现的解决方案。堵塞的执行器不仅会导致控制权限降低,还会产生振幅不确定的持续干扰。利用NASA GTM UAV的纵向动力学模型来证明,只要推力控制具有足够的控制权限,基于所提出方法的单个固定的重新配置控制器设计就能够适应具有任意卡纸位置的电梯卡纸故障。本文是解决更全面的飞行中失控事故预防的第一步,该问题涉及多个执行器故障,结构损坏,意外故障以及非线性失常状态恢复等。

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