Spacecraft Dynamics: Difference between revisions
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This course serves as an introduction to orbital mechanics, and spacecraft dynamics and control. | This course serves as an introduction to orbital mechanics, and spacecraft dynamics and control. | ||
SUPPLEMENT: “Fundamentals of Astrodynamics,” by R.R. Bate, D.D. Mueller, and J.E. White, Dover Publications, New York, NY, 1971. | '''TEXT''': “Spacecraft Attitude Determination and Control,” ed. James R. Wertz. | ||
'''SUPPLEMENT''': “Fundamentals of Astrodynamics,” by R.R. Bate, D.D. Mueller, and J.E. White, Dover Publications, New York, NY, 1971. | |||
* Overview | * Overview |
Latest revision as of 02:41, 23 July 2014
This course serves as an introduction to orbital mechanics, and spacecraft dynamics and control.
TEXT: “Spacecraft Attitude Determination and Control,” ed. James R. Wertz.
SUPPLEMENT: “Fundamentals of Astrodynamics,” by R.R. Bate, D.D. Mueller, and J.E. White, Dover Publications, New York, NY, 1971.
- Overview
- Spacecraft Systems
- Orbit Determination
- Attitude Determination
- Spacecraft Control
- Orbit Determination
- Kepler’s Equation
- Newton’s Equation
- Orbit Propagation
- Attitude Determination
- Attitude Parameterizations
- Kinematic Equations
- Attitude Sensors
- Deterministic Attitude Determination
- Kalman Filtering
- Attitude Dynamics
- Euler’s Equation
- Kinematic Equations
- Torque-free Response
- Nutation
- Disturbance Torques
- Spacecraft Control
- Linear Control
- Nonlinear Control
- Momentum-Bias Control
- Nutation and Libration Damping
- Gravity-Gradient Control
- Other (Time Permitting)
- Magnetic-Field Modeling
- Orbit Perturbations
Years Taught: Fall '96