输入饱和的高超声速飞行器线性变参数跟踪控制

Tinggui Yan, Shaohua Hu, Xinhua He, Yongyong Duan
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引用次数: 0

摘要

研究了参数不确定性、外部干扰和输入饱和约束下高超声速飞行器的线性变参数跟踪控制问题。整个设计过程包括系统分解、模型转换和基于lmi的控制器设计三个部分。具体来说,首先通过变量分解和小增益定理,将跟踪问题重新表述为不确定准lpv误差子系统的鲁棒H控制问题。然后,利用张量积模型变换技术将系统矩阵变换为凸多边形形式,由于系统分解过程,计算量少,灵活性强;由于只有加权函数与系统状态有关,因此控制器可以通过求解LTI顶点系统对应的有限个数的lmi来获得,而无需以高赫兹率在线求解状态相关的Riccati方程。此外,通过将控制增益矩阵定义为具有相同权函数的凸多边形形式,所设计的控制器是时变的和非线性的。仿真结果表明,该控制方法具有良好的跟踪性能和抗干扰性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Linear parameter-varying based tracking control of hypersonic flight vehicles with input saturation
This paper is concerned with Linear parameter-varying based tracking control of hypersonic flight vehicles subject to parameter uncertainties, external disturbances and input saturation constraints. The overall design procedure is consisted of three parts, which includes system decomposition, model transformation, and LMI-based controller design. Specifically, the tracking problem is firstly reformulated as the robust H — control for uncertain quasi-LPV error subsystems through variable decomposition and small gain theorem. Then, the tensor-product model transformation technique is used to transform the system matrices into convex polytopic forms, which has less computational load and more flexibility due to the system decomposition process. Since only the weighting functions are related to the system states, the controller can be obtained by solving finite number of LMIs corresponding the LTI vertex systems, instead of solving state-dependent Riccati equation on line at a high Hertz rate. Moreover, by defining the control gain matrix described as a convex polytopic form with the same weighting functions, the designed controller is time-varying and nonlinear. Simulation results demonstrate that the proposed control method can guarantee both good tracking and disturbances rejection performance.
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