By Walt Truszkowski, Harold Hallock, Christopher Rouff, Jay Karlin, James Rash, Michael Hinchey, Roy Sterritt
This booklet presents an in-depth dialogue of self reliant and autonomic platforms, their interdependencies, changes and similarities. present and pending concerns in those evermore more and more vital matters are highlighted and mentioned. innovations, rules and studies are explored when it comes to real-life NASA structures in spacecraft keep an eye on and within the exploration area.
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Extra info for Autonomous and Autonomic Systems: With Applications to NASA Intelligent Spacecraft Operations and Exploration Systems
Understandably, many of the future NASA missions are proposing multiple homogeneous spacecraft. 3 show future NASA multisatellite missions along with the operation requirement using current technology, and the goal. Keeping to the current technology of approximately four people per spacecraft, the cost of operations will become prohibitive as the number of spacecraft increases. Missions are currently being planned and proposed that will include tens and hundreds of spacecraft. The most eﬀective way of avoiding excessive cost of operations is by reducing the operators-to-spacecraft ratio.
This ground system function will become steadily more automated via COTS tools. 11 Engineering Data Analysis/Calibration Traditionally, nearly all spacecraft engineering analysis and calibration functions (with the exception of gyro drift-bias calibration and, for the small explorer (SMEX) missions, magnetometer calibration) have been performed on the ground. 2 Flight Software 31 communications-margins evaluations, etc. Often the work in question has been iterative and highly manually intensive.
Immobots often monitor their systems for years, and yet when certain events occur, they need to react in real-time. 5 Summary Incorporating further degrees of autonomy and autonomicity into future space missions will be crucial not only in reducing costs, but also in making some missions possible at all. The following chapters give an overview of how space and ground software has operated in the past, the enabling technology to make autonomous and autonomic missions possible, some applications of autonomy in past systems, and future missions where this technology will be critical.
Autonomous and Autonomic Systems: With Applications to NASA Intelligent Spacecraft Operations and Exploration Systems by Walt Truszkowski, Harold Hallock, Christopher Rouff, Jay Karlin, James Rash, Michael Hinchey, Roy Sterritt