DocumentCode
2426353
Title
On the interactions of chemical-process design under uncertainty and maintenance-optimisation
Author
Vassiliadis, C.G. ; Pistikopoulos, Efstratios N.
Author_Institution
Dept. of Chem. Eng., Imperial Coll. of Sci., London, UK
fYear
1998
fDate
19-22 Jan 1998
Firstpage
302
Lastpage
307
Abstract
While the impact of uncertainty in process parameters (such as product demands and prices, physical properties, etc.) on the design and operation of a chemical process has been widely recognised and studied over the last fifteen years, relatively little progress has been made in studying the influence of process uncertainty on maintenance scheduling and optimisation. This paper presents a novel optimisation formulation and a decomposition solution strategy for addressing the problem of maintenance scheduling under uncertainty in the context of chemical process design and operation. The proposed formulation features an expected profit objective function which takes into account the transitions between the different states of the chemical system, due to equipment failure; corrective and preventive maintenance policies are explicitly considered. The resulting model corresponds to a large scale mixed-integer nonlinear optimal control problem. By exploiting reliability properties, an effective two-step decomposition solution procedure is then proposed, which as illustrated with a process example problem, depicts an optimal preventive maintenance policy in the presence of process uncertainty: the time instants of required maintenance actions over a time horizon and the optimal sequence of components on which preventive maintenance is to be performed
Keywords
chemical technology; integer programming; maintenance engineering; nonlinear programming; reliability; scheduling; uncertainty handling; chemical-process design interactions; corrective maintenance; equipment failure; expected profit objective function; maintenance optimisation; maintenance scheduling; maintenance-optimisation; mixed-integer nonlinear optimal control; mixed-integer nonlinear optimisation; optimal preventive maintenance policy; preventive maintenance; process uncertainty; reliability properties; two-step decomposition solution; uncertainty; Chemical processes; Costs; Design optimization; Educational institutions; Equipment failure; Large-scale systems; Optimal control; Preventive maintenance; Process design; Uncertainty;
fLanguage
English
Publisher
ieee
Conference_Titel
Reliability and Maintainability Symposium, 1998. Proceedings., Annual
Conference_Location
Anaheim, CA
ISSN
0149-144X
Print_ISBN
0-7803-4362-X
Type
conf
DOI
10.1109/RAMS.1998.653796
Filename
653796
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