Automated Fault Tree Analysis for Hydraulic Systems
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Published:1996-06-01
Issue:2
Volume:118
Page:278-282
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ISSN:0022-0434
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Container-title:Journal of Dynamic Systems, Measurement, and Control
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language:en
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Short-container-title:
Author:
Hogan P. A.1, Burrows C. R.1, Edge K. A.1, Atkinson R. M.2, Montakhab M. R.2, Woollons D. J.2
Affiliation:
1. Fluid Power Centre, University of Bath, Bath, UK BA2 7AY 2. School of Engineering, Exeter University, Exeter, UK EX4 4QF
Abstract
Fault Tree Analysis is a commonly used technique for assessing the reliability and safety of engineering systems at the design stage but it is tedious and time-consuming to apply. A reconfigurable program is presented which utilizes a library of qualitative component models to enable fault tree type analyses of arbitrary hydraulic circuit configurations. It is applied to the analysis of failures of an experimental rig and a complex industrial system, and some features of its design and performance are discussed.
Publisher
ASME International
Subject
Computer Science Applications,Mechanical Engineering,Instrumentation,Information Systems,Control and Systems Engineering
Reference8 articles.
1. Atkinson
R. M.
, MontakhabM. R., PillayK. D. A., WoollonsD. J., HoganP. A., BurrowsC. R., and EdgeK. A., 1992, “Automated Fault Analysis for Hydraulic Systems: Part 1 - Fundamentals.” IMechE Proceedings, Part I, Vol. 206, No. 14, pp. 207–214. 2. Edge
K. A.
, and HarrisR. M., 1991, “The Design and Predicted Performance of a Regenerative System for Testing Positive Displacement Pumps.” ASME JOURNAL OF DYNAMIC SYSTEMS, MEASUREMENT, AND CONTROL, Vol. 113, No. 4, pp. 714–720. 3. Grantham, S. D., and Ungar, L. H., 1990, “Qualitative Physics”, in Formal Techniques in Artificial Intelligence, Banerji, R. B., ed., North Holland, pp. 77–121. 4. Hogan, P. A., 1993, “A Knowledge-based System for Automated Fault Diagnosis of Hydraulic Systems.” PhD thesis, University of Bath, UK. 5. Hogan
P. A.
, BurrowsC. R., EdgeK. A., AtkinsonR. M., MontakhabM. R., and WoollonsD. J., 1992, “Automated Fault Analysis for Hydraulic Systems: Part 2-Applications,” IMechE Proceedings, Part I, Vol. 206, No. 14, pp. 215–224.
Cited by
4 articles.
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