Adaptive ensemble surrogate-based optimization and analysis of forklift pallet racks

IF 0.3 4区 工程技术 Q4 ENGINEERING, MULTIDISCIPLINARY Revista Internacional de Metodos Numericos para Calculo y Diseno en Ingenieria Pub Date : 2023-01-01 DOI:10.23967/j.rimni.2023.10.005
W. Zhang, Y. Lu, L. Liye, Y. Mei, Z. Baochang
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Abstract

As an important part of the lifting platform of pallet forklift trucks, how to reduce the deformation of the pallet rack under working conditions while reducing the mass to ensure the safety performance of forklift trucks is the most concerning issue in the design of forklift truck structure. The pallet rack structure is complex, and optimizing simulation using traditional high-precision simulation models takes much time and effort. Therefore, this paper takes the lifting platform of an unmanned AVG forklift truck as the research object and establishes a parametric model of the pallet rack using the 3D modelling software SolidWorks and the finite element analysis software ANSYS to carry out static analysis of it. Optimization design variables are selected, a single surrogate model and ensemble surrogate model are chosen for various surrogate model techniques, a small number of sample points are used to construct a low-precision model, and adaptive infilling technology is used to improve the model accuracy, and the structure is optimized, and the results show that, while the pallet rack structure meets the requirements of light weight and strength, the mass is reduced by 1.2%, and the morphology is reduced by 17.2%. Moreover, a global sensitivity analysis of each design parameter was carried out under the guidance of the surrogate model, highlighting the most influential design variable as the height of the channel steel and establishing the design variables that should be taken into account in the structural design. This paper compares the performance of the mainstream single-surrogate model and ensemble-surrogate model as well as the adaptive infilling strategy in engineering design and proves that the surrogate model optimization method has a certain guiding significance for the structural optimization design of pallet racking.
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基于自适应集成代理的叉车托盘架优化分析
作为托盘叉车起重平台的重要组成部分,如何在降低质量的同时减少托盘架在工作状态下的变形,保证叉车的安全性能,是叉车结构设计中最为关注的问题。托盘架结构复杂,采用传统的高精度仿真模型进行优化仿真需要耗费大量的时间和精力。因此,本文以无人驾驶AVG叉车升降平台为研究对象,利用三维建模软件SolidWorks和有限元分析软件ANSYS建立托盘架的参数化模型,对其进行静力分析。选择优化设计变量,对各种代理模型技术分别选择单一代理模型和集成代理模型,利用少量样本点构建低精度模型,采用自适应填充技术提高模型精度,并对结构进行优化,结果表明,在满足轻量化和强度要求的同时,托盘架结构的质量降低了1.2%;形貌降低了17.2%。在代理模型的指导下,对各设计参数进行全局敏感性分析,突出槽钢高度这一影响最大的设计变量,确定结构设计中应考虑的设计变量。比较了主流的单代理模型和集成代理模型以及自适应填充策略在工程设计中的性能,证明了代理模型优化方法对托盘货架结构优化设计具有一定的指导意义。
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来源期刊
CiteScore
0.70
自引率
0.00%
发文量
26
审稿时长
6 months
期刊介绍: International Journal of Numerical Methods for Calculation and Design in Engineering (RIMNI) contributes to the spread of theoretical advances and practical applications of numerical methods in engineering and other applied sciences. RIMNI publishes articles written in Spanish, Portuguese and English. The scope of the journal includes mathematical and numerical models of engineering problems, development and application of numerical methods, advances in software, computer design innovations, educational aspects of numerical methods, etc. RIMNI is an essential source of information for scientifics and engineers in numerical methods theory and applications. RIMNI contributes to the interdisciplinar exchange and thus shortens the distance between theoretical developments and practical applications.
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