Control of Nonlinear Spacecraft Attitude Motion

所在平台: CourseraArchive

课程类别: 其他类别

大学或机构: CourseraNew

课程主页: https://www.coursera.org/archive/nonlinear-spacecraft-attitude-control

课程评论:没有评论

第一个写评论        关注课程

课程简介

University of Colorado Boulder

课程大纲

Lyapunov's direct method is employed to prove these stability properties for a nonlinear system and prove stability and convergence. The possible function definiteness is introduced which forms the building block of Lyapunov's direct method. Convenient prototype Lyapunov candidate functions are presented for rate- and state-error measures.

课程评论(0条)

课程详情

This course trains you in the skills needed to program specific orientation and achieve precise aiming goals for spacecraft moving through three dimensional space. First, we cover stability definitions of nonlinear dynamical systems, covering the difference between local and global stability. We then analyze and apply Lyapunov's Direct Method to prove these stability properties, and develop a nonlinear 3-axis attitude pointing control law using Lyapunov theory. Finally, we look at alternate feedback control laws and closed loop dynamics. After this course, you will be able to... * Differentiate between a range of nonlinear stability concepts * Apply Lyapunov’s direct method to argue stability and convergence on a range of dynamical systems * Develop rate and attitude error measures for a 3-axis attitude control using Lyapunov theory * Analyze rigid body control convergence with unmodeled torque

非线性航天器姿态运动的控制:本课程培训您编程特定方向和实现航天器在三维空间中移动的精确瞄准目标所需的技能。首先,我们涵盖了非线性动力学系统的稳定性定义,涵盖了局部和全局稳定性之间的差异。然后,我们分析并应用李雅普诺夫直接法来证明这些稳定性,并使用李雅普诺夫理论开发非线性三轴姿态指向控制律。最后,我们看一下备用的反馈控制律和闭环动力学。 完成本课程后,您将能够... *区分一系列非线性稳定性概念 *应用Lyapunov的直接方法来论证一系列动力学系统的稳定性和收敛性 *利用李雅普诺夫理论开发用于三轴姿态控制的速度和姿态误差测量 *使用未建模的扭矩分析刚体控制收敛

课程标签

0人关注该课程

主题相关的课程