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首页> 外文期刊>Journal of guidance, control, and dynamics >Enhanced sensor monitoring to maintain optimal aircraft handling in case of faults
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Enhanced sensor monitoring to maintain optimal aircraft handling in case of faults

机译:增强的传感器监控功能可在出现故障时保持最佳的飞机操作

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摘要

The design and validation of an advanced fault detection and diagnosis system to monitor the state-of-practice triplex redundant angle of attack measurement is presented. The proposed system fully solves the angle of attack sensor fault isolation problem. It thereby enhances the availability of the full control system functionalities in the case of multiple angle of attack sensor faults and helps to maintain optimal aircraft handling characteristics. The proposed fault detection and diagnosis system relies on advanced model-based and signal-based fault detection techniques. The used null-space-based method for the model-based fault detection filter design is extended to increase the filter robustness to model uncertainties. The developed approaches are applied and validated in realistic flight scenarios using a high-fidelity benchmark model of a large commercial transport aircraft. The reported results indicate that the use of the presented fault detection methods can help to maintain optimal aircraft handling in case of faults.
机译:提出了一种先进的故障检测与诊断系统的设计与验证,该系统可监测三态冗余攻角测量的实践状态。该系统完全解决了攻角传感器故障隔离问题。因此,在出现多个迎角传感器故障的情况下,它增强了完整控制系统功能的可用性,并有助于维持最佳的飞机操纵特性。提出的故障检测和诊断系统依赖于基于模型和信号的高级故障检测技术。扩展了用于基于模型的故障检测滤波器设计的基于零空间的方法,以提高滤波器的鲁棒性,从而对不确定性进行建模。使用大型商用运输机的高保真基准模型,在现实的飞行场景中应用并验证了开发的方法。报告的结果表明,在出现故障的情况下,使用本文提出的故障检测方法可以帮助维持最佳的飞机操作性能。

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  • 来源
    《Journal of guidance, control, and dynamics》 |2017年第12期|3127-3137|共11页
  • 作者单位

    DLR, German Aerospace Center, Institute of System Dynamics and Control, Wessling, Germany;

    DLR, German Aerospace Center, Institute of System Dynamics and Control, Wessling, Germany;

    Airbus, Aircraft Control, Toulouse, France;

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  • 正文语种 eng
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