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A fuzzy weighted relative error support vector machine for reverse prediction of concrete components

机译:混凝土组件反向预测的模糊加权相对误差支持向量机

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Concrete is one of the most commonly used construction materials in civil engineering. Being able to accurately predict concrete components based on concrete strength, slump and flow is crucial for saving manpower and financial resources. The reverse prediction nature of this task, however, makes it a very difficult problem to solve. Relative error support vector machines (RE-SVMs) have been successfully applied to tackle this problem using relative errors as equality constraints. Nevertheless, RE-SVMs are sensitive to noise, and their target values cannot be zero. In this paper, we present a fuzzy weighted RE-SVM (FW-RE-SVM) to address the limitations of RE-SVMs. A fuzzy weighted operation is first utilised to improve the robustness of RE-SVMs by assigning weights to the relative error constraints. A small value is further added to the denominators of the relative error constraints, in case their values are equal to zero. This helps to generalise the approach. Experimental results confirm that our proposed model has very good performance for reverse prediction of concrete components under both multi-input, one-output and multi-input, multi-output scenarios. (C) 2019 Elsevier Ltd. All rights reserved.
机译:混凝土是土木工程中最常用的建筑材料之一。能够基于混凝土强度,坍落度和流动准确地预测混凝土组件对于节省人力和财务资源至关重要。然而,这项任务的反向预测性质使其成为一个非常困难的问题。相对错误支持向量机(RE-SVM)已成功应用于使用相对错误作为平等约束来解决此问题。然而,RE-SVM对噪声敏感,它们的目标值不能为零。在本文中,我们介绍了一个模糊加权重新SVM(FW-RE-SVM),以解决重新SVM的局限性。首先利用模糊加权操作来通过将权重分配给相对误差约束来改善重新SVM的鲁棒性。如果它们的值等于零,则进一步将小值进一步添加到相对误差约束的分母中。这有助于概括方法。实验结果证实,我们所提出的模型在多输入,单输出和多输入,多输出方案中对混凝土组件的反向预测具有非常好的性能。 (c)2019 Elsevier Ltd.保留所有权利。

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