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Continuous high order sliding mode controller design for a flexible air-breathing hypersonic vehicle

机译:柔性进气超音速飞行器的连续高阶滑模控制器设计

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This paper investigates the problem of tracking control with uncertainties for a flexible air-breathing hypersonic vehicle (FAHV). In order to overcome the analytical intractability of this model, an Input-Output linearization model is constructed for the purpose of feedback control design. Then, the continuous finite time convergence high order sliding mode controller is designed for the Input-Output linearization model without uncertainties. In addition, a nonlinear disturbance observer is applied to estimate the uncertainties in order to compensate the controller and disturbance suppression, where disturbance observer and controller synthesis design is obtained. Finally, the synthesis of controller and disturbance observer is used to achieve the tracking for the velocity and altitude of the FAHV and simulations are presented to illustrate the effectiveness of the control strategies.
机译:本文研究了一种柔性呼吸式超音速飞行器(FAHV)的不确定性跟踪控制问题。为了克服该模型的解析难解性,构建了用于反馈控制设计的输入-输出线性化模型。然后,针对输入输出线性化模型设计了具有连续性的有限时间收敛高阶滑模控制器。此外,采用非线性干扰观测器来估计不确定性,以补偿控制器和干扰抑制,从而获得干扰观测器和控制器的综合设计。最后,利用控制器和干扰观测器的综合来实现对FAHV的速度和高度的跟踪,并通过仿真来说明控制策略的有效性。

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