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Adaptive control of hypersonic vehicles using guardian maps theory

机译:基于监护图理论的高超音速飞行器自适应控制

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Compared with traditional vehicles, the dynamic model of hypersonic vehicles features higher nonlinearity, tighter coupling and stronger uncertainty. What's more, the designed controller needs to have more stringent performance demands as well as robustness requirements. According to the guardian maps theory, a proposed design method can adaptively adjust control parameters in relation to the given control structure for hypersonic vehicles. First, a linear parameter varying (LPV) model of a hypersonic vehicle is established, and after that handling qualities are translated in terms of eigenvalue confinement. Then for a fixed controller architecture and initial controller gains, a set of control parameters is adjusted automatically using this theory while ensuring generalized stability in the expected flight process. Finally, an example of a hypersonic vehicle is provided in simulation to verify the feasibility of the proposed control method.
机译:与传统车辆相比,高超音速车辆的动力学模型具有更高的非线性,更紧密的耦合和更大的不确定性。而且,设计的控制器需要具有更严格的性能要求和鲁棒性要求。根据监护人地图理论,提出的设计方法可以相对于给定的高超音速飞行器控制结构来自适应地调整控制参数。首先,建立高超音速飞行器的线性参数变化(LPV)模型,然后根据特征值限制转换处理质量。然后,对于固定的控制器架构和初始控制器增益,使用该理论可自动调整一组控制参数,同时确保预期飞行过程中的总体稳定性。最后,在仿真中提供了超音速飞行器的示例,以验证所提出的控制方法的可行性。

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