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Robust adaptive tracking control for air-breathing hypersonic vehicles

机译:空气超音速飞行器的鲁棒自适应跟踪控制

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This paper focuses on the adaptive tracking problem for air-breathing hypersonic vehicles (AHVs) subject to aerodynamic uncertainties and unknown disturbances caused by modeling errors. Motivated by the nonlinear disturbance observer-based control approach (NDOBC), the parameter uncertainties are merged into the disturbances. A control law based on the tracking control method originally proposed by Sun et al. (2013) is designed to achieve the desired tracking objective. The adaptation law used to update the disturbances estimates can be synthesized by usual adaptive control techniques. Different from the backstepping method, this control method does not need to transform the system model into a strict-feedback form. Simulation results show its effectiveness.
机译:本文着重于空气动力学的超音速飞行器(AHV)的自适应跟踪问题,该问题会受到空气动力学的不确定性和建模误差引起的未知干扰的影响。在基于非线性干扰观测器的控制方法(NDOBC)的推动下,参数不确定性被合并到干扰中。基于Sun等人最初提出的跟踪控制方法的控制律。 (2013)旨在实现所需的跟踪目标。可以通过常规的自适应控制技术来合成用于更新干扰估计的自适应定律。与backstepping方法不同,此控制方法不需要将系统模型转换为严格反馈形式。仿真结果表明了其有效性。

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