Journal of Guidance Control and Dynamics · 1990 · 72 citations · 4 references
Space VehicleEngineeringMechanical EngineeringSpacecraft Attitude ControlTorque-generating ControlSpace VehiclesSystems EngineeringReaction WheelsKinematicsAstronauticsMechatronicsPropulsionRigid SpacecraftApplied ForceAerospace EngineeringSpacecraft ControlGyroscopeMechanical SystemsSpace TechnologyVibration ControlSpace Engineering
Previous studies indicated that an applied force was necessary to perform in-flight identification of the mass and center of mass of a spacecraft. This paper shows that the mass and center of mass of a rigid spacecraft can be determined using only torque-producing actuators such as control-moment gyros or reaction wheels, and commonly available sensors, e.g., rate gyros and accelerometers. A space-station application is presented.
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