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FAULT DETECTION AND CORRECTION FOR THE SOLAR DYNAMICS OBSERVATORY ATTITUDE CONTROL SYSTEM Scott R. Starin, Melissa F. Vess, Thomas M. Kenney, Manuel D. Maldonado, and Wendy M. Morgenstern Goddard Space Flight Center, Gre
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Document Date: 2013-04-10 16:49:23


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Company

Lockheed Martin / Astrophysics Laboratory / the Sun / General Dynamics / /

Event

Product Issues / /

Facility

The Solar Dynamics Observatory / Stanford University / INTRODUCTION The Solar Dynamics Observatory / NASA Goddard Space Flight Center / Solar Dynamics Observatory / University of Colorado / /

IndustryTerm

software structure / flight software tasks / attitude solution / gimbal control electronics / relative time processor / software reconfiguration / data processing / absolute time processor / software fault / solar array electronics / cross-strapped attitude control electronics / sensor data processing / correction software structure / power service electronics / on-board software / spacecraft software modules / power services / flight software / software tasks / redundant hardware / /

Organization

first Space Weather Research Network mission / Stanford University / US Federal Reserve / University of Colorado / SDO FDC / Atmospheric Imaging Assembly / National Aeronautics and Space Administration / Wendy M. Morgenstern Goddard Space Flight Center / /

Person

Thomas M. Kenney / Galileo Avionica / Manuel D. Maldonado / Melissa F. Vess / /

Position

MP / SunAcq controller / controller / /

Product

commands / ST data / /

ProvinceOrState

New Mexico / Maryland / Colorado / /

SportsLeague

Stanford University / /

Technology

ADC / main processors / absolute time processor / relative time processor / /

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