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A new multi-gene genetic programming approach to nonlinear system modeling - Part I: materials and structural engineering problems

机译:非线性系统建模的一种新的多基因遗传规划方法-第一部分:材料和结构工程问题

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This paper presents a new approach for behavioral modeling of structural engineering systems using a promising variant of genetic programming (GP), namely multi-gene genetic programming (MGGP). MGGP effectively combines the model structure selection ability of the standard GP with the parameter estimation power of classical regression to capture the nonlinear interactions. The capabilities of MGGP are illustrated by applying it to the formulation of various complex structural engineering problems. The problems analyzed herein include estimation of: (1) compressive strength of high-performance concrete (2) ultimate pure bending of steel circular tubes, (3) surface roughness in end-milling, and (4) failure modes of beams subjected to patch loads. The derived straightforward equations are linear combinations of nonlinear transformations of the predictor variables. The validity of MGGP is confirmed by applying the derived models to the parts of the experimental results that are not included in the analyses. The MGGP-based equations can reliably be employed for pre-design purposes. The results of MSGP are found to be more accurate than those of solutions presented in the literature. MGGP does not require simplifying assumptions in developing the models.
机译:本文提出了一种新的结构工程系统行为建模方法,该方法使用了有前途的基因编程(GP),即多基因遗传编程(MGGP)。 MGGP有效地结合了标准GP的模型结构选择能力和经典回归的参数估计能力,以捕获非线性相互作用。通过将MGGP应用于各种复杂的结构工程问题的阐述,可以说明其功能。本文分析的问题包括:(1)高性能混凝土的抗压强度(2)钢管的最终纯弯曲,(3)端铣削中的表面粗糙度,以及(4)受到修补的梁的破坏模式负载。导出的直接方程是预测变量的非线性变换的线性组合。通过将导出的模型应用于实验结果中未包括在分析中的部分,可以确认MGGP的有效性。基于MGGP的方程式可以可靠地用于预设计目的。发现MSGP的结果比文献中提出的解决方案的结果更准确。 MGGP在开发模型时不需要简化假设。

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