DocumentCode
1358687
Title
Hybrid evolutionary techniques for the maintenance scheduling problem
Author
Burke, E.K. ; Smith, A.J.
Author_Institution
Autom. Scheduling & Planning Group, Nottingham Univ., UK
Volume
15
Issue
1
fYear
2000
fDate
2/1/2000 12:00:00 AM
Firstpage
122
Lastpage
128
Abstract
The incorporation of local search operators into a genetic algorithm has provided very good results in certain scheduling problems. The resulting algorithm from this hybrid approach has been termed a memetic algorithm. This paper investigates the use of a memetic algorithm for the thermal generator maintenance scheduling problem. The local search operators alone have been found (in earlier work by the authors and others) to produce good quality results. The main purpose of this paper is to discover whether a memetic approach can produce better results. We describe the approach taken and highlight the variety of local search algorithms that were employed. We compare the memetic algorithms with a variety of algorithms that include the local search operators on their own and a range of algorithms that apply the local search operator to randomly generated solutions. We see that, for the problems tested, the memetic algorithms produce better quality solutions (although they do take more time about it). Of course, in practice, for a problem like this, the time taken to produce a solution is not a major issue. What is far more important is the quality of the solution. We conclude that the most effective method (of the ones tested here) is a memetic approach that employs a tabu-search operator
Keywords
genetic algorithms; maintenance engineering; power generation scheduling; simulated annealing; thermal power stations; genetic algorithm; hybrid approach; hybrid evolutionary techniques; local search algorithms; local search operators; maintenance scheduling; memetic algorithm; tabu-search operator; thermal generator maintenance scheduling; Capacity planning; Costs; Genetic algorithms; Helium; Integer linear programming; Large-scale systems; Meeting planning; Power system modeling; Scheduling algorithm; Testing;
fLanguage
English
Journal_Title
Power Systems, IEEE Transactions on
Publisher
ieee
ISSN
0885-8950
Type
jour
DOI
10.1109/59.852110
Filename
852110
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