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A Novel Design Concept of Cemented Paste Backfill (CPB) Materials: Biobjective Optimization Approach by Applying an Evolved Random Forest Model
Authors:Yanjun He  Yunhai Cheng  Mengxiang Ma  Fenghui Li  Yaxin Song  Long Liu  Xudong Wang  Jiandong Huang
Affiliation:1.Lijiahao Coal Mine, Baotou Energy Co., Ltd., China Energy Investment Corporation, Ordos 017008, China;2.College of Resources, Shandong University of Technology, Qiangangwan Road, Qingdao 100027, China;3.School of Mining Engineering, Anhui University of Science and Technology, Huainan 232001, China;4.School of Civil Engineering, Guangzhou University, Guangzhou 510006, China
Abstract:For cemented paste backfill (CPB), uniaxial compressive strength (UCS) is the key to ensuring the safety of stope construction, and its cost is an important part of the mining cost. However, there are a lack of design methods based on UCS and cost optimization. To address such issues, this study proposes a biobjective optimization approach by applying a novel evolved random forest (RF) model. First, the evolved RF model, based on the beetle search algorithm (BAS), was constructed to predict the UCS of CPB. The consistency between the predicted value and the actual value is high, which proves that the hybrid machine learning model has a good effect on the prediction of the UCS of CPB. Then, considering the linear relationship between the costs and the components of CPB, a mathematical model of the cost is constructed. Finally, based on the weighted sum method, the biobjective optimization process of the UCS and cost of CPB is conducted; the Pareto front optimal solutions of UCS and the cost of CPB can be obtained by the sort of solution set. When the UCS or the cost of CPB is constant, the Pareto front optimal solutions can always have a lower cost or a higher UCS compared with the actual dataset, which proves that the biobjective optimization approach has a good effect.
Keywords:uniaxial compressive strength   cost   multiobjective optimization model
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