White-Tailed Eagle Algorithm for Global Optimization and Low-Cost and Low-CO2 Emission Design of Retaining Structures

被引:6
|
作者
Arandian, Behdad [1 ]
Iraji, Amin [2 ]
Alaei, Hossein [3 ]
Keawsawasvong, Suraparb [4 ]
Nehdi, Moncef L. [5 ]
机构
[1] Islamic Azad Univ, Dept Elect Engn, Dolatabad Branch, Esfahan 8441811111, Iran
[2] Urmia Univ Technol, Engn Fac Khoy, Orumiyeh 5716693188, Iran
[3] Islamic Azad Univ, Dept Civil Engn, Qaemshahr Branch, Qaemshahr 1477893855, Iran
[4] Thammasat Univ, Thammasat Sch Engn, Dept Civil Engn, Bangkok 52190, Thailand
[5] McMaster Univ, Dept Civil Engn, Hamilton, ON L8S 4M6, Canada
关键词
nature-inspired; white-tailed eagle; retaining structure; cost; CO2; emissions; PARTICLE SWARM OPTIMIZATION; NONCIRCULAR FAILURE SURFACE; LEARNING-BASED OPTIMIZATION; BIG-BANG; MULTIOBJECTIVE OPTIMIZATION; DIFFERENTIAL EVOLUTION; FIREFLY ALGORITHM; OPTIMUM DESIGN; SEARCH; WALLS;
D O I
10.3390/su141710673
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
This study proposes a new metaheuristic optimization algorithm, namely the white-tailed eagle algorithm (WEA), for global optimization and optimum design of retaining structures. Metaheuristic optimization methods are now broadly implemented to address problems in a variety of scientific domains. These algorithms are typically inspired by the natural behavior of an agent, which can be humans, animals, plants, or any physical agent. However, a specific metaheuristic algorithm (MA) may not be able to find the optimal solution for every situation. As a result, researchers will aim to propose and discover new methods in order to identify the best solutions to a variety of problems. The white-tailed eagle algorithm (WEA) is a simple but effective nature-inspired algorithm inspired by the social life and hunting activity of white-tailed eagles. The WEA's hunting is divided into two phases. In the first phase (exploration), white-tailed eagles seek prey inside the searching region. The eagle goes inside the designated space according to the position of the best eagle to find the optimum hunting position (exploitation). The proposed approach is tested using 13 unimodal and multimodal benchmark test functions, and the results are compared to those obtained by some well-established optimization methods. In addition, the new algorithm automates the optimum design of retaining structures under seismic load, considering two objectives: economic cost and CO2 emissions. The results of the experiments and comparisons reveal that the WEA is a high-performance algorithm that can effectively explore the decision space and outperform almost all comparative algorithms in the majority of the problems.
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页数:28
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