改进原子搜索优化(ASO)用于钢梁裂纹长度预测

IF 2 4区 材料科学 Q2 MATERIALS SCIENCE, CHARACTERIZATION & TESTING
Hoang-Le Minh, Thanh Sang-To, Binh Le-Van, Samir Khatir, Thanh Cuong-Le
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引用次数: 0

摘要

提出了一种准确确定损伤钢梁结构裂缝长度的新方法。该方法将有限元模型的几何更新技术与原子搜索优化(ASO)的一种新变体lsamv - ASO相结合。lsamv - aso算法的关键特征是它生成由lsamv分布决定的随机步长。基于这些步长,lsamv - aso可以实现更宽的运动来扩展搜索空间,也可以实现更窄的运动来开发潜在的搜索空间,接近全局最优。在ASO算法中引入了一种新的搜索策略,有效地提高了ASO算法寻找全局最优解和逃避局部最优解的能力。为了比较lcv - ASO与原始ASO的有效性,本文以23个经典基准函数作为第一个例子。比较结果表明,该方法在精度和收敛速度上都优于原ASO方法。然后,对裂纹长度分别为2mm、4mm、8mm和10mm的损伤钢梁进行了一系列试验,验证了l - aso法确定钢梁裂纹长度的有效性和可靠性。根据实验测得的振动频率和有限元模型得到的振动频率,建立了目标函数。在有限元分析的基础上,通过调整裂纹长度的几何坐标,建立了目标函数,并采用l ·······算法对目标函数进行优化求解。本研究证明了所提方法的有效性,并证明了lsamvy - aso算法是一种很有前途的优化算法,可用于解决各种工程优化问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Improved Atom Search Optimization (ASO) for Crack Length Prediction in Steel Beams

Improved Atom Search Optimization (ASO) for Crack Length Prediction in Steel Beams

This paper presents a new method for accurately determining the crack length in damaged steel beam structures. The proposed method combines the geometric updating technique of the finite element model (FEM) with a new variant of atom search optimization (ASO) called Lévy–ASO. The key feature of the Lévy–ASO algorithm is that it generates random step lengths determined by the Lévy distribution. Based on these step lengths, Lévy–ASO can achieve wider movements to expand the search space or narrower movements to exploit the potential search spaces, which is close the global optimum. It leads to a new search strategy within the ASO algorithm, effectively improving its ability to find the global optimum solution and escape the local optimum. To compare the effectiveness of Lévy–ASO with the original ASO, 23 classical benchmark functions are used as the first example. The comparison results show the superiority of Lévy–ASO over the original ASO in both accuracy and convergence rate. Then, a series of experiments were conducted on damaged steel beams with the crack lengths of 2 mm, 4 mm, 8 mm, and 10 mm to demonstrate the effectiveness and reliability of Lévy–ASO in determining the crack length of steel beams. Based on the vibration frequencies measured in these experiments and obtained from the finite element (FE) model, an objective function is established. The process of finding the crack length is carried out using the Lévy–ASO algorithm to optimize the objective function, which is established based on the analysis of the FEM where the geometric coordinates of the crack length are adjusted. This study proves the effectiveness of the proposed method, and the Lévy–ASO algorithm is recognized as a promising optimization algorithm for solving various engineering optimization problems.

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来源期刊
Physical Mesomechanics
Physical Mesomechanics Materials Science-General Materials Science
CiteScore
3.50
自引率
18.80%
发文量
48
期刊介绍: The journal provides an international medium for the publication of theoretical and experimental studies and reviews related in the physical mesomechanics and also solid-state physics, mechanics, materials science, geodynamics, non-destructive testing and in a large number of other fields where the physical mesomechanics may be used extensively. Papers dealing with the processing, characterization, structure and physical properties and computational aspects of the mesomechanics of heterogeneous media, fracture mesomechanics, physical mesomechanics of materials, mesomechanics applications for geodynamics and tectonics, mesomechanics of smart materials and materials for electronics, non-destructive testing are viewed as suitable for publication.
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