DocumentCode :
3205934
Title :
An evolvable tri-reasoner IVHM system
Author :
Atlas, Les ; Bloor, George ; Brotherton, Tom ; Howard, Lany ; Jaw, Link ; Kacprzynski, Greg ; Karsai, Gabor ; Mackey, Ryan ; Mesick, Jay ; Reuter, Rick ; Roemer, Mike
Volume :
6
fYear :
2001
fDate :
2001
Firstpage :
3023
Abstract :
Meeting the challenges of decreasing operational costs and increasing operational readiness for future aircraft will require a systemic approach to integrated vehicle health management (IVHM). Realizing such an approach will involve synergistic deployments of component health monitoring technologies, as well as integrated, model-based reasoning capabilities for the interpretation of the monitor outputs. Further, it will involve the introduction of learning technologies to support the continuous improvement of the knowledge enabling these reasoning capabilities. Finally, it will involve organizing these elements into an architecture that governs integration and interoperation-within the VHM system, between its on-board elements and their ground-based support functions, and between the VHM system and external maintenance and operations functions. We present and discuss the architecture for an evolvable tri-reasoner integrated VHM system, its particular elements and their interrelationships
Keywords :
aerospace expert systems; aircraft computers; aircraft maintenance; computerised monitoring; condition monitoring; diagnostic expert systems; diagnostic reasoning; fault location; model-based reasoning; sensor fusion; component health monitoring technologies; decreasing operational costs; diagnostic reasoner; evolvable tri-reasoner integrated system; external maintenance; fault isolation; fusion technology; ground-based support functions; increasing operational readiness; integrated model; integrated vehicle health management; interoperation; model-based reasoning capabilities; on-board elements; prognostic reasoner; Aircraft propulsion; Costs; Laboratories; Light emitting diodes; Military aircraft; Monitoring; Signal to noise ratio; Software maintenance; Software systems; Vehicles;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Aerospace Conference, 2001, IEEE Proceedings.
Conference_Location :
Big Sky, MT
Print_ISBN :
0-7803-6599-2
Type :
conf
DOI :
10.1109/AERO.2001.931322
Filename :
931322
Link To Document :
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