Journal of Guidance Control and Dynamics · 1983 · 13 citations · 2 references
Dual-spin Planetary SpacecraftEngineeringEducationSpacecraft Attitude ControlPrecision NavigationOrbit DeterminationCalibrationQuaternion Integration AlgorithmCelestial MechanicKinematicsInstrumentationInclinometerInertial Attitude DeterminationInertial AttitudeInertial SensorsMechatronicsSensor CalibrationAerospace EngineeringGyroscope
Design and performance evaluations of an onboard inertial attitude determination system for a dual-spin planetary spacecraft are presented. A quaternion integration algorithm and a rate estimator sequentially determine the scan platform's inertial attitude and rate from the drift and misalignment compensated gyro outputs. A least-squares estimator algorithm processes the star transit data from a rotor-mounted star scanner, and provides periodic updates of the scan platform's attitude as a means of correcting the drift of the quaternion integration algorithm. Computer simulated algorithm performance in the presence of nutation and sensor noise are presented.
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