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Control of Nonlinear Spacecraft Attitude Motion

This course trains you in the skills needed to program specific orientation and achieve precise aiming goals for spacecraft moving through three dimensional...

By Hanspeter Schaub on Coursera

About This Course

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 The material covered is taking from the book "Analytical Mechanics of Space Systems" available at https://arc.aiaa.org/doi/book/10.2514/4.105210.

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How much does Control of Nonlinear Spacecraft Attitude Motion cost?

Visit the Control of Nonlinear Spacecraft Attitude Motion course page for current pricing and available discounts.

Who teaches Control of Nonlinear Spacecraft Attitude Motion?

Control of Nonlinear Spacecraft Attitude Motion is taught by Hanspeter Schaub, University of Colorado Boulder.

What skill level is Control of Nonlinear Spacecraft Attitude Motion for?

This course is designed for all levels learners.

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Students0
Duration5 hours
LevelAll Levels
Languageen
PlatformCoursera