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首页> 外文期刊>International Journal of Rock Mechanics and Mining Sciences >Prediction of specific cutting energy in natural stone cutting processes using the neuro-fuzzy methodology
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Prediction of specific cutting energy in natural stone cutting processes using the neuro-fuzzy methodology

机译:使用神经模糊方法预测天然石材切割过程中的特定切割能量

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摘要

Specific cutting energy (SE_(cut)) values are used for the determination of energy requirements of the stone cutting process and are thus useful in predicting the cost and production schedule. In this study, adaptive hybrid intelligence (AHI) techniques were employed to develop SE_(cut) prediction models based on 40 different natural building stones in nineteen different stone processing plants. The feed rate, depth of cut, which are cutting process working parameters, and uniaxial compressive strength, bending strength and point load strength of the rock to be cut which constitute rock physico-mechanical properties were used as the input parameters in the development of SE_(cut) prediction models. The AHI techniques included Adaptive Neuro-Fuzzy Inference System (ANFIS), Dynamic Evolving Neuro-Fuzzy Inference System (DENFIS), and Evolving Fuzzy Neural Networks (EFuNN). Among the AHI techniques, ANFIS gave the best SE_(cut) prediction accuracy. The results also showed that it is possible to predict specific cutting energy of natural stone cutting operations with higher accuracy (R~2=0.95) with the developed ANFIS prediction models using depth of cut, feed rate and uniaxial compressive strength values of natural building stones.
机译:特定的切割能量(SE_(cut))值用于确定石材切割过程的能量需求,因此可用于预测成本和生产进度。在这项研究中,自适应混合智能(AHI)技术被用于基于19种不同石材加工厂中的40种不同天然建筑石材开发SE_(cut)预测模型。进给速度,切削深度(这是切削加工的工作参数)以及构成岩石物理力学特性的被切削岩石的单轴抗压强度,弯曲强度和点载荷强度用作SE_开发中的输入参数(剪切)预测模型。 AHI技术包括自适应神经模糊推理系统(ANFIS),动态进化神经模糊推理系统(DENFIS)和进化模糊神经网络(EFuNN)。在AHI技术中,ANFIS提供了最佳的SE_(cut)预测精度。结果还表明,利用已开发的ANFIS预测模型,利用天然建筑石材的切割深度,进给速率和单轴抗压强度值,可以更准确地预测天然石材切割操作的比切割能量(R〜2 = 0.95)。 。

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