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Nonlinear adaptive reconfigurable controller for a generic 6-DOF hypersonic vehicle model

机译:通用6自由度高超音速飞行器模型的非线性自适应可重构控制器

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The development of a nonlinear adaptive controller with reconfiguration capabilities for a generic 6-DOF model of an air-breathing hypersonic vehicle is considered in this paper. The proposed controller is endowed with a modular structure (comprised of an inner-loop adaptive attitude controller, a robust nonlinear outer-loop controller and a dynamic control allocation scheme) that avoids the complexity typical of solutions based on adaptive back-stepping. An observer-based algorithm achieves decoupling between adaptation and constrained actuator dynamics. A case study is presented to illustrate the capability of the proposed methodology to deal with the simultaneous occurrence of significant model uncertainty and actuator faults.
机译:本文研究了一种具有自适应功能的非线性自适应控制器的开发,该控制器适用于呼吸高超音速飞行器的通用6自由度模型。所提出的控制器具有模块化结构(由内环自适应姿态控制器,鲁棒的非线性外环控制器和动态控制分配方案组成),该模块结构避免了基于自适应反步的解决方案通常具有的复杂性。基于观察者的算法实现了自适应和受约束的执行器动力学之间的解耦。进行了案例研究,以说明所提出的方法处理重大模型不确定性和执行器故障的同时发生的能力。

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