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Application of grammatical evolution to coefficient identification problem in two-dimensional elastic problem

机译:语法演化在二维弹性问题系数识别中的应用

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摘要

Grammatical evolution (GE), which is a kind of evolutionary algorithms, is designed to find a function, an executable program or program fragment that will achieve a good fitness value for the given objective function to be minimized. In this study, GE is applied for the coefficient identification problem of the stiffness matrix in the two-dimensional elastic problem. Finite element analysis of the plate with a circular hole is performed for determining the set of the stress and the strain components. Grammatical evolution determines the coefficient matrix of the relationship between the stress and strain components. The coefficient matrix is compared with Hooke's law in order to confirm the validity of the algorithm. After that, three algorithms are shown for improving the convergence speed of the original GE algorithm.
机译:语法进化(GE)是一种进化算法,旨在查找一个函数,可执行程序或程序片段,这些函数将为最小化给定目标函数获得良好的适用性。在这项研究中,GE被应用于二维弹性问题中刚度矩阵的系数识别问题。对带有圆孔的板进行有限元分析,以确定应力和应变分量的集合。语法演变决定了应力和应变分量之间关系的系数矩阵。将系数矩阵与胡克定律进行比较,以确认算法的有效性。之后,给出了三种算法来提高原始GE算法的收敛速度。

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