Tracking with Steady-State Optimization: an Application to Air-Breathing Hypersonic Vehicle Control

D. Sigthorsson, A. Serrani
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引用次数: 25

Abstract

The specific control problem addressed in the paper is the design of controllers that ensure asymptotic tracking of output reference trajectories for overactuated systems. The redundancy in the input space is used to optimize the steady-state performance of the closed-loop system. Since the considered plant models are not square, the control input and state trajectories in steady state that enforce perfect tracking are not unique. The proposed methodology employs a continuous parameterization of all possible steady state input trajectories, that is used for optimizing the selection of the steady state input, while providing perfect tracking and fulfillment of constraints on the magnitude of the control input. An application to altitude and velocity tracking control for an hypersonic vehicle employing air-breathing (scramjet) propulsion is presented and discussed
基于稳态优化的跟踪:在吸气式高超声速飞行器控制中的应用
本文讨论的具体控制问题是确保过驱动系统的输出参考轨迹渐近跟踪的控制器设计。利用输入空间的冗余来优化闭环系统的稳态性能。由于所考虑的植物模型不是方形的,因此在稳定状态下执行完美跟踪的控制输入和状态轨迹不是唯一的。所提出的方法采用所有可能的稳态输入轨迹的连续参数化,用于优化稳态输入的选择,同时提供完美的跟踪和实现对控制输入大小的约束。提出并讨论了采用超燃冲压发动机推进的高超声速飞行器高度和速度跟踪控制的应用
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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