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Garnek, Mike

Publications and source records attributed to Garnek, Mike.

UARS in-flight jitter study for EOS

Response data collected from gyroscopes on board the Upper Atmosphere Research Satellite (UARS) provided a unique opportunity to analyze actual flight pointing jitter data. Flight modal frequencies and damping values are derived from the measured data using an Eigensystem Realization Algorithm (ERA). Flight frequencies at various solar array positions are compared to analytical predictions obtained with a Finite Element Model. The solar array modal frequencies change with position due to the modes acting about different spacecraft inertial axes. Higher order modes were difficult to identify due to the limited instrumentation. Future flight jitter studies on other spacecraft would be significantly aided by additional instrumentation. Spacecraft jitter due to continuous disturbance sources such as the 1.6 meter scanning microwave antenna, the solar array drive, and reaction wheels is presented. The solar array drive disturbance dominates the spacecraft response during normal operation.

Molnar, John

Upper Atmosphere Research Satellite Jitter Study

The study objectives are to analyze in-flight jitter; evaluate different models of the Upper Atmosphere Research Satellite (UARS); and determine jitter prediction accuracy such that adequate (but not excessive) design margins will assume future mission success. The topics are presented in viewgraph form and include the following: UARS chronology; UARS disturbance experiment; microwave limb sounder antenna and mirror time profiles; solar array drive disturbance; roll and yaw jitter correlation with solar array position; solar array rotation; UARS disturbance summary; concept for reduction of jitter effect; jitter reduction using window scheduling; and highlights/lessons learned.

Woodard, Stanley