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首页> 外文期刊>Complexity >Analysis of Beam-Column Designs by Varying Axial Load with Internal Forces and Bending Rigidity Using a New Soft Computing Technique
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Analysis of Beam-Column Designs by Varying Axial Load with Internal Forces and Bending Rigidity Using a New Soft Computing Technique

机译:利用新型软计算技术改变轴向载荷和弯曲刚度的轴荷载分析

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摘要

Design problems in structural engineering are often modeled as differential equations. These problems are posed as initial or boundary value problems with several possible variations in structural designs. In this paper, we have derived a mathematical model that represents different structures of beam-columns by varying axial load with or without internal forces including bending rigidity. We have also developed a novel solver, the LeNN-NM algorithm, which consists of weighted Legendre polynomials, and a single path following optimizer, the Nelder–Mead (NM) algorithm. To evaluate the performance of our solver, we have considered three design problems representing beam-columns. The values of performance indicators, MAD, TIC, NSE, and ENSE, are calculated for a hundred simulations. The outcome of our statistical analysis points to the superiority of the LeNN-NM algorithm. Graphical illustrations are presented to further elaborate on our claims.
机译:结构工程中的设计问题通常被建模为微分方程。 这些问题被构成为初始或边界值问题,具有若干可能的结构设计变化。 在本文中,我们通过改变轴向载荷或没有包括弯曲刚性的内部力来衍生一种数学模型,该数学模型表示通过包括或没有内部力的轴向载荷。 我们还开发了一种新颖的求解器,Lenn-NM算法,由加权传奇多项式组成,以及优化器,Nelder-Mead(NM)算法之后的单路径。 为了评估我们的求解器的表现,我们已经考虑了代表光束列的三个设计问题。 计算绩效指标,MAD,TIC,NSE和ENSE的价值,用于百分比。 我们的统计分析结果指向Lenn-NM算法的优越性。 提出了在我们的索赔中进一步详细说明的图形图示。

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