主动容错控制系统

Essam Nabil, Abdel-Azem Sobaih, B. Abou-Zalam
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引用次数: 8

摘要

本文提供了一种可行的主动容错控制系统,以适应执行器和/或传感器的部分故障,从而使过程性能体面地下降;通过使用一组约束Kaiman滤波器,开发了一种基于模型的故障检测和隔离(FDI)技术,深入了解过程行为,然后在存在系统干扰和随机噪声的情况下估计故障执行器和/或传感器的有效因子。将奇异值分解(SVD)原理与特征结构赋值技术相结合,提出了可重构控制器设计方法。通过对海军研究生院(NPS)无人潜航器转向子系统的仿真,验证了该方案的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Active fault-tolerant control system
In this paper a viable active fault-tolerant control system is provided to accommodate partial actuator and/or sensor faults with graceful degradation of the process performance, a model-based fault detection and isolation (FDI) technique developed with deeper insight into the process behavior by using a set of constrained Kaiman filters, and then estimating the effectiveness factor for the faulty actuator and/or sensor in the presence of system disturbances and random noise. Reconfigurable controller design is developed by combining both singular value decomposition (SVD) principle and eigenstructure assignment technique. The effectiveness of the proposed scheme has justified by Simulation result on the steering subsystem of the Naval Postgraduate School (NPS) UUV with simulated actuator (rudder) failures.
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