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AN ADAPTIVE ROBUST SCHEME FOR MULTIPLE ACTUATOR FAULT ACCOMMODATION

机译:用于多个执行器故障住宿的自适应鲁棒方案

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In this paper, we solve the problem of output tracking for linear systems in presence of unknown actuator failures using discontinuous projection based output feedback adaptive robust control (ARC) scheme. The faulty actuators are characterized as unknown inputs stuck within certain bounds at unknown instants of time. This problem is of prime importance for safety critical missions like flight control system. Many existing techniques to solve this problem use model reference adaptive control (MRAC), which is not well suited for handling various disturbances and modeling errors inherent to any realistic system model. In comparison, the backstepping based output feedback ARC approach used here can effectively deal with such uncertainties. Simulation studies are carried out on a linearized Boeing 747 model, which shows the effectiveness of the proposed scheme. Furthermore, we compare our simulation results with that of MRAC in presence of disturbances, which clearly illustrates the superior performance of the proposed ARC based actuator fault compensation scheme.
机译:在本文中,我们解决了使用不连续投影的输出反馈自适应鲁棒控制(ARC)方案在存在未知的致动器故障的线性系统输出跟踪问题问题。故障执行器的特征在于在未知时间内的某些范围内卡住的未知输入。这个问题是飞行控制系统等安全关键任务的主要重要性。解决此问题的许多现有技术使用模型参考自适应控制(MRAC),这不适合处理任何现实系统模型固有的各种干扰和建模误差。相比之下,这里使用的基于反向的输出反馈电弧方法可以有效地处理这种不确定性。在线化波音747模型进行了仿真研究,该模型显示了所提出的方案的有效性。此外,我们将模拟结果与MRAC在存在的情况下进行比较,这清楚地说明了所提出的基于弧的执行器故障补偿方案的优越性。

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