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Nature-Inspired Metaheuristic Regression System: Programming and Implementation for Civil Engineering Applications

机译:受自然启发的元启发式回归系统:土木工程应用的编程和实现

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Developing an expert system has been considered as complex and knowledge driven process. This study proposes a natureinspired metaheuristic regression system that can find appropriate solutions. The system uses a graphical user interface but does not require a mathematical program installation. The user-friendly interface was designed in the MATLAB graphical user interface design environment (GUIDE) and was implemented by MATLAB compiler. The stand-alone system is easy to use and has many functions, including evaluation, use of an opened data file, test set selection, hold-out, cross validation, and prediction to solve many civil engineering problems with simple manipulations on the system interface. Five benchmark functions were used to evaluate the effectiveness of the optimization module. The performance of the proposed regression system was then validated by comparing its solutions obtained for civil engineering problems with those obtained by empirical methods reported previously. Five actual data sets including energy-efficient buildings, construction material strength, concrete structure shear strength, bridge scour depth, and subbase soil modulus were used as case studies. The prediction accuracy was 8.24-91.76% better than those of previously reported models. The analytical results support the feasibility of using the proposed system to solve numerous civil engineering problems. The system was also much faster at identifying the optimum parameters and solving problems. The experiments confirmed that the novel nature-inspired metaheuristic regression system proposed in this study has superior efficiency, effectiveness, and accuracy. (C) 2016 American Society of Civil Engineers.
机译:开发专家系统被认为是复杂且知识驱动的过程。这项研究提出了一个自然启发的元启发式回归系统,可以找到适当的解决方案。该系统使用图形用户界面,但不需要数学程序安装。用户友好的界面是在MATLAB图形用户界面设计环境(GUIDE)中设计的,并由MATLAB编译器实现。该独立系统易于使用,并具有许多功能,包括评估,使用打开的数据文件,测试集选择,保留,交叉验证和预测,只需在系统界面上进行简单的操作即可解决许多土木工程问题。使用五个基准功能来评估优化模块的有效性。然后,通过将其针对土木工程问题获得的解决方案与通过先前报告的经验方法获得的解决方案进行比较,来验证所提出的回归系统的性能。案例研究使用了五个实际数据集,包括节能建筑,建筑材料强度,混凝土结构抗剪强度,桥梁冲刷深度和地基土模量。预测准确性比以前报告的模型提高了8.24-91.76%。分析结果支持使用所提出的系统解决众多土木工程问题的可行性。该系统在确定最佳参数和解决问题方面也快得多。实验证实,本研究提出的新颖的自然启发式元启发式回归系统具有卓越的效率,有效性和准确性。 (C)2016年美国土木工程师学会。

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