A Unit Commitment Solution by Integer-Coded Genetic Algorithm
Publish place: 18th International Power System Conference
Publish Year: 1382
Type: Conference paper
Language: English
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PSC18_117
Index date: 18 May 2007
A Unit Commitment Solution by Integer-Coded Genetic Algorithm abstract
This paper presents a new solution to the thermal unit commitment (UC) problem based on an integer-coded Genetic Algorithm (GA). The GA chromosome consists of a sequence of alternating sign integer numbers representing the sequence of operation/reservation times of the generating units. The proposed coding achieves significant chromosome size reduction compared to the usual binary coding. As a result, algorithm robustness and execution time are improved. In addition, generating unit minimum up and minimum down time constraints are directly coded in the chromosome, thus avoiding the use of many penalty functions that usually distort the search space. Test results with systems of up to 100 units and 24-hour scheduling horizon are presented.
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A Unit Commitment Solution by Integer-Coded Genetic Algorithm authors
Nima Amjady
IEEE Member Department of Electrical Engineering Semnan University, Semnan, Iran
Masoud Esmaili
National Dispatching Department Tavanir Organization, Tehran, Iran
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