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Publikační činnost
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Record type:
stať ve sborníku (D)
Home Department:
Katedra informatiky a počítačů (31400)
Title:
Enhanced Tree-seed Algorithm Solving Real-world Problems
Citace
Bujok, P. Enhanced Tree-seed Algorithm Solving Real-world Problems.
In:
2020 7th International Conference on Soft Computing & Machine Intelligence (ISCMI) 2020-11-13 Stockholm, Sweden.
Stockholm, Sweden: IEEE, 2020. s. 12-16. ISBN 978-1-7281-7560-7.
Subtitle
Publication year:
2020
Obor:
Informatika
Number of pages:
5
Page from:
12
Page to:
16
Form of publication:
Elektronická verze
ISBN code:
978-1-7281-7560-7
ISSN code:
2640-0154
Proceedings title:
2020 7th International Conference on Soft Computing & Machine Intelligence (ISCMI)
Proceedings:
Mezinárodní
Publisher name:
IEEE
Place of publishing:
Stockholm, Sweden
Country of Publication:
Sborník vydaný v zahraničí
Název konference:
Místo konání konference:
Stockholm, Sweden
Datum zahájení konference:
Typ akce podle státní
příslušnosti účastníků:
Celosvětová akce
WoS code:
EID:
2-s2.0-85100346143
Key words in English:
Optimization;Statistics;Sociology;Standards;Convergence;Search problems;Linear programming;seed algorithm;random selection;archive;eigenvector crossover;experimental study;real-world problems
Annotation in original language:
In this paper, an enhanced variant of the efficient nature-inspired Tree-seed optimisation algorithm (TSA) is designed. The original TSA lacks memory of old good solutions and mechanism for rotated objective functions. Two new mechanisms are used to increase the efficiency of the original TS algorithm. At first, archive A for successful seeds is used to help unsuccessful trees (TSrA). Secondly, rotationally invariant Eigenvector transformation of seeds is employed to cope with rotated problems (TSrAeig). Newly proposed TS variants are applied on a set of 22 real-world optimisation problems from CEC 2011. These problems enable to evaluate methods properly for future using in real applications. Results achieved by TSrA and TSrAeig are compared with results of the original TSA algorithm. Newly proposed mechanisms increase the performance of the original TSA algorithm significantly.
Annotation in english language:
References
Reference
R01:
RIV/61988987:17310/20:A21027CQ
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