DocumentCode :
2112665
Title :
An automated contingency management simulation environment for integrated health management and control
Author :
Ge, Jianhua ; Roemer, Michael I. ; Vachtsevanos, George
Author_Institution :
Impact Technol., LLC, Rochester, NY, USA
Volume :
6
fYear :
2004
fDate :
6-13 March 2004
Firstpage :
3725
Abstract :
This work presents an automated contingency management (ACM) software simulation test bed developed in Simulink that can be applied to various unmanned platforms for developing; testing and verifying automated fault accommodation strategies. Specifically, this paper introduces the required software components and integrated health management and control architecture for performing these tasks and applies it to the unmanned combat armed rotorcraft (UCAR). The ACM Simulink Blockset provides for \´\´plug in play" integration of UAV models, prognostic and health management (PHM) algorithms, adaptive flight control logic, and intelligent agents into a simulation-based design environment. By integrating advanced health management, intelligent control, and intelligent reasoner strategies, the ACM simulation test bench allows designers to examine optimal fault accommodation techniques that can increases availability, improve safety, and optimize maintenance resource planning for complex vehicle systems. The demonstrated graphical user interface enables the end users to initially configure the ACM system and monitor the effectiveness of the vehicle simulation under various fault scenarios. It also enables users to rapidly design and simulate ACM components for integrated health monitoring and control system for helicopter robotics, UCARs, reusable launch vehicles, propulsion, aircraft, automotive, etc.
Keywords :
adaptive control; aerospace control; aerospace simulation; aerospace testing; condition monitoring; fault simulation; graphical user interfaces; intelligent control; planning; remotely operated vehicles; software agents; software tools; Simulink Blockset; adaptive flight control logic; automated contingency management; automated fault accommodation strategy; complex vehicle systems; graphical user interface; health management and control architecture; intelligent agents; intelligent control; intelligent reasoner; maintenance resource planning; prognostic health management algorithms; simulation based design environment; software components; software simulation test bed; unmanned aerial vehicle model; unmanned combat armed rotorcraft; Aerospace control; Automatic control; Automatic testing; Contingency management; Environmental management; Intelligent control; Prognostics and health management; Software testing; Unmanned aerial vehicles; Vehicle safety;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Aerospace Conference, 2004. Proceedings. 2004 IEEE
ISSN :
1095-323X
Print_ISBN :
0-7803-8155-6
Type :
conf
DOI :
10.1109/AERO.2004.1368190
Filename :
1368190
Link To Document :
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