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Fault Tolerant Control of Aircraft Actuating Surfaces using Generalized DI and Integral SM Control

机译:使用广义DI和集成SM控制的飞机操纵面容错控制

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The paper introduces a new fault tolerant control structure against control surface failure, made by a combined use of Generalized Dynamic Inversion (GDI) control and Integral Sliding Mode control (ISMC). The null-control vector in the GDI-based control law parameterizes all the possible control functions that drive the aircraft trajectories to the sliding surface. A simple choice of the null-control vector is made, and is shown to yield closed-loop system stability for the nominal actuator scenario. The small gain theorem is employed to provide an explicit lower limit on the actuator efficiency matrix in the event of faults/failures. The efficacy of the proposed method in tolerating control surface actuator failure is demonstrated on the ADMIRE benchmark model.
机译:本文介绍了一种新的针对控制面故障的容错控制结构,该结构通过结合使用通用动态反转(GDI)控制和整体滑模控制(ISMC)制成。基于GDI的控制定律中的空控制矢量将所有可能的控制功能参数化,这些功能将飞机的轨迹驱动到滑动表面。可以对零位控制矢量进行简单选择,并显示为标称执行器场景提供闭环系统稳定性。小增益定理用于在出现故障/故障时为执行器效率矩阵提供一个明确的下限。在ADMIRE基准模型上证明了所建议方法在容忍控制表面执行器故障方面的功效。

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