六旋翼微型飞行器非线性输入动力学建模与反演控制

A. Sanca, P. Alsina, J.J.F. Cerqueira
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引用次数: 29

摘要

本文建立了具有非线性输入和全状态反步技术的六转子动力学模型。考虑了死区和饱和非线性输入对转子的反射。目标是获得机械系统的忠实数学表示,用于分析和控制设计,不仅在悬停时,而且在起飞、着陆和飞行时进行空中导航任务。在Matlab/Simulink中实现了该模型,对控制系统进行了优化设计。仿真结果表明,该控制律具有良好的稳定性和良好的跟踪性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamic Modeling with Nonlinear Inputs and Backstepping Control for a Hexarotor Micro-Aerial Vehicle
In this paper the hexarotor dynamic model with nonlinear inputs and full state back stepping technique is presented. Dead zone and saturation nonlinear inputs are considered reflected to the rotors. The goal is to obtain a faithful mathematical representation of the mechanical system for analysis and control design, not only in hover, but also in motion when take-off, land and flight for aerial navigation tasks. The model was implemented in Matlab/Simulink to optimize the design of control system. Simulations of the hexarotor model shows the performance of the control law and stabilizes with good tracking.
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