Spacecraft relative motion control solutions stabilize the spacecraft relative to another spacecraft. This is useful control the approach prior to docking, to circumnavigate while inspect the target object, or to remain in a bounded vicinity about the target. This course covers the basics of nonlinear control theory to apply Lyapunov's direct method to the relative motion control problem. Feedback control strategies using inertial coordinates, differential orbit elements and Hill frame coordinates are studied. Reference relative motions are considered that are either naturally occurring or require a feed-forward control component.

Spacecraft Relative Motion Control

Spacecraft Relative Motion Control
This course is part of Spacecraft Formation Relative Orbits Specialization

Instructor: Hanspeter Schaub
Access provided by University of Warwick
Gain insight into a topic and learn the fundamentals.
Advanced level
Designed for those already in the industry
2 weeks to complete
at 10 hours a week
Flexible schedule
Learn at your own pace
What you'll learn
numerically simulate spacecraft relative motion
Analyze relative motion stability
Develop relative motion feedback control solutions
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Assessments
27 assignments
Taught in English
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This course is part of the Spacecraft Formation Relative Orbits Specialization
When you enroll in this course, you'll also be enrolled in this Specialization.
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