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Publikační činnost
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Record type:
stať ve sborníku (D)
Home Department:
Katedra matematiky (31100)
Title:
Differential Evolution with Eigenvector Crossover Solving Rotated Problems
Citace
Einšpiglová, D., Zámečníková, H. a Stuchlík, D. Differential Evolution with Eigenvector Crossover Solving Rotated Problems.
In:
ISCAMI2017, Proceedings of the 18th International Student Conference on Applied Mathematics and Informatics 2017-06-08 Malenovice.
Ostrava: University of Ostrava, 2017. s. 23-23. ISBN 978-80-7464-921-9.
Subtitle
Publication year:
2017
Obor:
Informatika
Number of pages:
1
Page from:
23
Page to:
23
Form of publication:
Tištená verze
ISBN code:
978-80-7464-921-9
ISSN code:
Proceedings title:
ISCAMI2017, Proceedings of the 18th International Student Conference on Applied Mathematics and Informatics
Proceedings:
Publisher name:
University of Ostrava
Place of publishing:
Ostrava
Country of Publication:
Sborník vydaný v ČR
Název konference:
Místo konání konference:
Malenovice
Datum zahájení konference:
Typ akce podle státní
příslušnosti účastníků:
Celosvětová akce
WoS code:
EID:
Key words in English:
Differential evolution, rotationally invariant crossover, Eigenvector crossover, experimental comparison
Annotation in original language:
Differential Evolution (DE) is population-based optimization algorithm which has only few control parameters. However, it is not easy task to set the parameters appropriately for solved optimization problem but it is crucial for obtaining good results. Moreover, the quality of points produced in evolution is highly affected by the coordinate system. Some types of problems could not be solved satisfactory with basic version of DE algorithm, e.g. rotated problems. In this paper, we focus on a new approach published. Coordinates of points from which the new trial point is created are transformed into the coordinate system of principal components. New coordinate system is based on the current distribution of points in the population. Does the using of such mechanism lead to better solution for rotated problems? Experiments are conducted on benchmark set developed for CEC2013 competition containing pairs of rotated and non-rotated functions.
Annotation in english language:
References
Reference
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