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Output Tracking Control for Nonminimum Phase Flexible Air-Breathing Hypersonic Vehicle Models

机译:非最小相位柔性空气超音速飞行器模型的输出跟踪控制

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Based on the nonlinear stable inversion approach, an exact output tracking control law is designed for flexible air-breathing hypersonic vehicles (FAHVs). This problem is challenging because of the inherent couplings between the propulsion system, the airframe dynamics, and the presence of strong flexibility effects. Because of the complex nonlinear dynamics of the vehicles, a control-oriented model, which can retain the dominant features of the higher-fidelity model, is adopted for the control design. With respect to velocity and altitude as the regulated outputs, a partially linearized model of FAHVs is obtained through input/output linearization. Then the internal dynamics of FAHVs model are constructed and the stability of the zero dynamics are discussed. Based on the noncausal stable inversion approach, the ideal internal dynamics of FAHVs are computed. A state tracking model is derived from the output tracking problem, and an optimal controller is designed. The stability of the closed-loop system, including the unstable internal dynamics, is guaranteed by the designed control law. Finally, simulations are given to show the effectiveness of the proposed control method. (C) 2014 American Society of Civil Engineers.
机译:基于非线性稳定反演方法,设计了一种精确的输出跟踪控制律,用于柔性呼吸高超音速飞行器(FAHV)。由于推进系统之间的固有耦合,机身动力学以及强大的柔韧性效应,这一问题具有挑战性。由于车辆复杂的非线性动力学,控制设计采用了可保留高保真模型主要特征的面向控制的模型。对于速度和高度作为调节输出,通过输入/输出线性化获得了部分FAHV的线性化模型。然后构造了FAHVs模型的内部动力学,并讨论了零动力学的稳定性。基于非因果稳定反演方法,计算了FAHV的理想内部动力学。从输出跟踪问题导出状态跟踪模型,并设计了最优控制器。所设计的控制规律可确保闭环系统的稳定性,包括不稳定的内部动力学。最后,仿真表明该控制方法的有效性。 (C)2014年美国土木工程师学会。

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