Efficient Large-Scale Multiobjective Optimization Based on a Competitive Swarm Optimizer

Tian Y, Zheng X, Zhang X, Jin Y (2020)
IEEE Transactions on Cybernetics 50(8): 3696-3708.

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
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Autor*in
Tian, Ye; Zheng, Xiutao; Zhang, Xingyi; Jin, YaochuUniBi
Abstract / Bemerkung
There exist many multiobjective optimization problems (MOPs) containing a large number of decision variables in real-world applications, which are known as large-scale MOPs. Due to the ineffectiveness of existing operators in finding optimal solutions in a huge decision space, some decision variable division-based algorithms have been tailored for improving the search efficiency in solving large-scale MOPs. However, these algorithms will encounter difficulties when solving problems with complicated landscapes, as the decision variable division is likely to be inaccurate and time consuming. In this paper, we propose a competitive swarm optimizer (CSO)-based efficient search for solving large-scale MOPs. The proposed algorithm adopts a new particle updating strategy that suggests a two-stage strategy to update position, which can highly improve the search efficiency. The experimental results on large-scale benchmark MOPs and an application example demonstrate the superiority of the proposed algorithm over several state-of-the-art multiobjective evolutionary algorithms, including problem transformation-based algorithm, decision variable clustering-based algorithm, particle swarm optimization algorithm, and estimation of distribution algorithm.
Erscheinungsjahr
2020
Zeitschriftentitel
IEEE Transactions on Cybernetics
Band
50
Ausgabe
8
Seite(n)
3696-3708
ISSN
2168-2267
eISSN
2168-2275
Page URI
https://pub.uni-bielefeld.de/record/2978397

Zitieren

Tian Y, Zheng X, Zhang X, Jin Y. Efficient Large-Scale Multiobjective Optimization Based on a Competitive Swarm Optimizer. IEEE Transactions on Cybernetics. 2020;50(8):3696-3708.
Tian, Y., Zheng, X., Zhang, X., & Jin, Y. (2020). Efficient Large-Scale Multiobjective Optimization Based on a Competitive Swarm Optimizer. IEEE Transactions on Cybernetics, 50(8), 3696-3708. https://doi.org/10.1109/TCYB.2019.2906383
Tian, Ye, Zheng, Xiutao, Zhang, Xingyi, and Jin, Yaochu. 2020. “Efficient Large-Scale Multiobjective Optimization Based on a Competitive Swarm Optimizer”. IEEE Transactions on Cybernetics 50 (8): 3696-3708.
Tian, Y., Zheng, X., Zhang, X., and Jin, Y. (2020). Efficient Large-Scale Multiobjective Optimization Based on a Competitive Swarm Optimizer. IEEE Transactions on Cybernetics 50, 3696-3708.
Tian, Y., et al., 2020. Efficient Large-Scale Multiobjective Optimization Based on a Competitive Swarm Optimizer. IEEE Transactions on Cybernetics, 50(8), p 3696-3708.
Y. Tian, et al., “Efficient Large-Scale Multiobjective Optimization Based on a Competitive Swarm Optimizer”, IEEE Transactions on Cybernetics, vol. 50, 2020, pp. 3696-3708.
Tian, Y., Zheng, X., Zhang, X., Jin, Y.: Efficient Large-Scale Multiobjective Optimization Based on a Competitive Swarm Optimizer. IEEE Transactions on Cybernetics. 50, 3696-3708 (2020).
Tian, Ye, Zheng, Xiutao, Zhang, Xingyi, and Jin, Yaochu. “Efficient Large-Scale Multiobjective Optimization Based on a Competitive Swarm Optimizer”. IEEE Transactions on Cybernetics 50.8 (2020): 3696-3708.

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