Memetic coral reefs optimization algorithms for optimal geometrical design of submerged arches

被引:10
|
作者
Perez-Aracil, J. [1 ]
Camacho-Gomez, C. [2 ]
Hernandez-Diaz, A. M. [3 ]
Pereira, E. [1 ]
Camacho, D. [2 ]
Salcedo-Sanz, S. [1 ]
机构
[1] Univ Alcala, Dept Signal Proc & Commun, Alcala De Henares, Spain
[2] Univ Politecn Madrid, Dept Comp Syst Engn, Madrid, Spain
[3] Univ La Laguna, Continuum Mech & Struct Anal, San Cristobal la Laguna, Spain
关键词
Submerged arches; Nonlinear analysis; Evolutionary algorithms; CRO-SL; Memetic algorithms; PARTICLE SWARM OPTIMIZATION; DIFFERENTIAL EVOLUTION; FUNICULAR ARCHES; LOCAL SEARCH; ENSEMBLE; SELECTION; STRATEGIES; TUTORIAL; SHAPES; ENERGY;
D O I
10.1016/j.swevo.2021.100958
中图分类号
TP18 [人工智能理论];
学科分类号
081104 ; 0812 ; 0835 ; 1405 ;
摘要
This paper deals with the geometrically nonlinear analysis of submerged arches by means of memetic Coral Reefs Optimization algorithms. The classic design of submerged arches is only focused on calculating the bend-ing stress-less shape (funicular shape) of the structure. Nevertheless, recent works show that this funicular shape can be approached by using a parametric family curve, which also allows a multi-variable optimization of the arch's geometry. Using this novel parametric set of curves, we propose a new Coral Reefs Optimization (CRO) algorithm based on a memetic approach to tackle the geometrically nonlinear design of submerged arches. Specif-ically, the proposed CRO approaches have been tested with different search procedures as exploration operators, and we also test a multi-method version of the algorithm, the Coral Reefs Optimization with Substrate Layers (CRO-SL), which considers several search procedures within the same evolutionary population. A local search to improve the solutions has been considered in all cases, to obtain powerful memetic operators for this problem. It is also shown how the different memetic versions of the CRO (specially those involving multi-methods and Dif-ferential Evolution search procedures), together with the parametric encoding, are able to obtain nearly-optimal geometries for underwater installations. The performance of the proposed algorithm has been compared with state-of-the-art algorithms for optimization: L-SHADE and HCLPSO. Statistical tests have carried out with the aim of comparing the results. It is shown that there is not significant differences between the proposed results by the three algorithms.
引用
收藏
页数:12
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