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A novel hybrid Harris hawks-simulated annealing algorithm and RBF-based metamodel for design optimization of highway guardrails

机译:一种新型哈里斯哈里斯鹰派模拟退火算法和基于RBF的高速公路护栏设计优化的元模型

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摘要

In this paper, a novel hybrid optimization algorithm is introduced by hybridizing a Harris hawks optimization algorithm(HHO) and simulated annealing for the purpose of accelerating its global convergence performance and optimizing structural design problems. This paper is the first research study in which the hybrid Harris hawks simulated annealing algorithm (HHOSA) is used for the optimization of design parameters for highway guardrail systems. The HHOSA is evaluated using the well-known benchmark problems such as the three-bar truss problem, cantilever beam problem, and welded beam problem. Finally, a guardrail system that has an H1 containment level as a case study is optimized to investigate the performance of the HHOSA. The guardrail systems are designed with different cross-sections and distances between the posts. TB11 and TB42 crash analyses are performed according to EN 1317 standards. Twenty-five different designs are evaluated considering weight, the guardrail working width, and the acceleration severity index (ASI). As a result of this research, the optimum design of a guardrail is obtained, which has a minimum weight and acceleration severity index value (ASI). The results show that the HHOSA is a highly effective approach for optimizing real-world design problems.
机译:本文通过杂交Harris Hawks优化算法(HHO)和模拟退火来引入一种新的混合优化算法,以加速其全球收敛性能和优化结构设计问题。本文是第一个研究研究,其中Hybrid Harris Hawks模拟退火算法(Hhosa)用于优化公路护栏系统的设计参数。使用众所周知的基准问题评估Hhosa,例如三条桁架问题,悬臂梁问题和焊接梁问题。最后,优化了作为案例研究的H1遏制级别的护栏系统,以研究Hhosa的性能。护栏系统设计有不同横截面和柱之间的距离。 TB11和TB42崩溃分析根据EN 1317标准进行。考虑重量,护栏工作宽度和加速度严重性指数(ASI)评估二十五种不同的设计。由于本研究,获得了保护栏的最佳设计,其具有最小重量和加速度严重性指数值(ASI)。结果表明,HHOSA是优化现实世界设计问题的高效方法。

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