基于二级卡尔曼滤波的波音747作动器/控制面卡滞故障估计

Akan Guven, C. Hajiyev
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引用次数: 0

摘要

针对波音-747商用飞机发生的执行器卡死故障事件,构建一种两级卡尔曼滤波(TSKF)来估计执行器的控制效果。采用两种分段封装估计算法,通过TSKF保持执行器的状态和卡位置或控制损失来诊断执行器故障。测试了TSKF算法的性能。事故的根源可能是由于控制面卡住,如副翼、方向舵、升降舵;此外,它也可能以鸟击的形式出现,可能会撕裂位于飞机机翼或尾部的部分控制面。在本研究中,方向舵控制面存在卡滞故障,提出的算法引入了被卡滞故障控制面的卡滞值,利用TSKF实现了令人满意的估计值,并在飞机横向动力学上进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Two-Stage Kalman Filter Based Estimation of Boeing 747 Actuator/Control Surface Stuck Faults
This research aims to construct a two-stage Kalman filter (TSKF) that is available to estimate the control effectiveness of the actuator on behalf of an actuator stuck fault incident occurring on Boeing-747 commercial airplane. The actuator faults can be diagnosed via TSKF that maintains the states and stuck positions or control loss by two section encapsulated estimation algorithms. The performance of the TSKF algorithm is tested. The source of accidents can be as a result from a control surface stuck such an aileron, rudder, elevator; also, it can be present and appear as bird strike that could tear some part of the control surfaces located on the wings or tail of the airplane. In this study, there is a stuck fault on the rudder control surface and the proposed algorithm introduces the value of the stuck of the broken control surface and it is achieved that utilizing TSKF performs satisfying estimation values which are verified as well on lateral dynamics of the airplane.
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