“Simulation as a Tool in Operational Safety, Reliability and Control”
Authors: Arne Tyssø,Affiliation: CAMO AS, Trondheim
Reference: 1985, Vol 6, No 3, pp. 127-140.
Keywords: Monte Carlo simulation, operator training, safety shutdown systems, modeling, computer-aided modeling, error detection, fault diagnosis, dynamic simulation
Abstract: Dynamic simulation has long been considered indispensable for the understanding of process dynamics and for control system design. There has been a tremendous increase in the number of computer based simulation tools, and considerable improvements have been made in the development of complex plants with advanced automatic control.
PDF (1980 Kb) DOI: 10.4173/mic.1985.3.2
DOI forward links to this article:
[1] Arnstein J. Borstad (1986), doi:10.4173/mic.1986.3.2 |
[2] W. Marquardt, P. Holl and E.D. Gilles (1987), doi:10.1016/S1474-6670(17)55465-8 |
[1] BALCHEN, J.G., FJELD, M. SAELID, S. (1983). Significant problems and potential solutions in future process control, The annual AIChE-meeting in Washington D.C., 1983. Available from the symposium.
[2] BROSILOW, C.B. (1985). Modular Integration, Modeling, Identification and Control, 6, 3, 153-179 doi:10.4173/mic.1985.3.4
[3] DEANS, N.D. MANN, D.P. (1982). The development of a new hardware reliability simulator, Robert Gordon´s Institute of Technology, Aberdeen, U.K.
[4] HERMAN, D.J. (1985). Integration of process design, simulation and control systems, Department of Chemical Engineering, University of Waterloo, Canada.
[5] LANE, G., GRUNDT, H.J. MALLOY, K. (1985). Miriam: Software for system effectiveness evaluations, Reliability 85, Birmingham, U.K. National Center of Systems Reliability, Warrington, U.K.
[6] LAPP, A.S. POWERS, G.J. (1977). Computer-aided synthesis of fault-trees, IEEE Transactions on Reliability, R-26,2-13.
[7] LEE, F.P. (1984). Process computer alarm and disturbance analysis: Outline of methods for systematic synthesis of the fault propagation structure, Computers and Chem. Engng., 8,91-103.1.
[8] MITCHELL GAUTHIER, Assoc. (1981). ACSL: Advanced Continuous Simulation Language, Users Guide Reference Manual, Concord, Mass, U.S.
[9] ONSHUS, T. (1981). Control of the Sponge Iron Process, Report STF48 A81010, The Foundation of Scientific and Industrial Research at the Norwegian Institute of Technology, Automatic Control Division. Trondheim, Norway.
[10] O´SHIMA, E. (1984). Process computer alarm and disturbance analyis: Outline of methods for systematic synthesis of the fault propagation structure, Computers and Chem. Engng. 8, 91-103 doi:10.1016/0098-1354(84)87016-7
[11] STUAN, V. (1980). Control of the L-D converter, Report STF48 F81039. The Foundation of Scientific and Industrial Research at the Norwegian Institute of Technology, Automatic Control Division. Trondheim, Norway.
[12] TSUGE, Y., SHIOZAKI, J., MATSUYAMA, H. O´SHIMA, E. (1982). Fault diagnosis Algorithms based on the signed directed graph and its modifications, The international Symposium on Process Systems Engineering, Kyoto, Japan, August 21-27 1982. The Society of Chemical Engineers, Japan.
[13] TYSSØ, A. BREMBO, I.C. (1979). Installation and operation of a multivariable ship boiler control system, Automatica 14, pp. 213-221 doi:10.1016/0005-1098(78)90086-9
BibTeX:
@article{MIC-1985-3-2,
title={{Simulation as a Tool in Operational Safety, Reliability and Control}},
author={Tyssø, Arne},
journal={Modeling, Identification and Control},
volume={6},
number={3},
pages={127--140},
year={1985},
doi={10.4173/mic.1985.3.2},
publisher={Norwegian Society of Automatic Control}
};