Sliding Mode Observer-Based Fault Detection and Isolation in Flight Control Systems

Jing-jing Liu, B. Jiang, Youmin Zhang
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引用次数: 15

Abstract

This paper deals with observer-based actuator fault detection, isolation and estimation (FDIE) schemes for a class of linear systems with external disturbances. To isolate and estimate the possible actuator faults, we first relate each possibility to a faulty model, then for each possible faulty model, we design a corresponding sliding mode observer (SMO), the residuals are defined as the norm of the magnitudes of the output estimation errors resulting from all possible faulty models. It is proved that, for the faulty model corresponding to the faulty actuator, the designed SMO can ensure the related output estimation error converges to a sufficiently small neighborhood. It is also shown that, for all other possible faulty models, the related output estimation errors are much larger. Finally, a research civil aircraft model (RCAM) is used to illustrate the design procedures and the effectiveness of the proposed actuator FDIE method.
基于滑模观测器的飞行控制系统故障检测与隔离
研究了一类具有外部干扰的线性系统的基于观测器的执行器故障检测、隔离和估计方法。为了隔离和估计可能的执行器故障,我们首先将每种可能性与故障模型联系起来,然后针对每种可能的故障模型设计相应的滑模观测器(SMO),残差定义为所有可能故障模型导致的输出估计误差的大小的范数。结果表明,对于故障执行器对应的故障模型,所设计的SMO能够保证输出估计误差收敛到足够小的邻域内。结果还表明,对于所有其他可能的故障模型,相关的输出估计误差要大得多。最后,以一个民用飞机研究模型(RCAM)为例,说明了所提作动器FDIE方法的设计过程和有效性。
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