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Expert systems for automated maintenance of a Mars oxygen production systemApplication of expert system concepts to a breadboard Mars oxygen processor unit have been studied and tested. The research was directed toward developing the methodology required to enable autonomous operation and control of these simple chemical processors at Mars. Failure detection and isolation was the key area of concern, and schemes using forward chaining, backward chaining, knowledge-based expert systems, and rule-based expert systems were examined. Tests and simulations were conducted that investigated self-health checkout, emergency shutdown, and fault detection, in addition to normal control activities. A dynamic system model was developed using the Bond-Graph technique. The dynamic model agreed well with tests involving sudden reductions in throughput. However, nonlinear effects were observed during tests that incorporated step function increases in flow variables. Computer simulations and experiments have demonstrated the feasibility of expert systems utilizing rule-based diagnosis and decision-making algorithms.
Document ID
19930048554
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
Authors
Huang, Jen-Kuang
(NASA Lyndon B. Johnson Space Center Houston, TX, United States)
Ho, Ming-Tsang
(NASA Lyndon B. Johnson Space Center Houston, TX, United States)
Ash, Robert L.
(Old Dominion Univ. Norfolk, VA, United States)
Date Acquired
August 16, 2013
Publication Date
August 1, 1992
Publication Information
Publication: Journal of Spacecraft and Rockets
Volume: 29
Issue: 4
ISSN: 0022-4650
Subject Category
Ground Support Systems And Facilities (Space)
Accession Number
93A32551
Distribution Limits
Public
Copyright
Other

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