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Implementation of Statistical Analysis to Determine Optimum Ultimate Pit

机译:实施统计分析以确定最佳极限坑

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The ultimate pit may affect other aspects in the life of a mine such as economical, technical, environmental, and social aspects. What makes it even more complex is that most often there are many pits which are economically minable. This calls for a heuristic approach to determine which of these pits is the ultimate pit. This study presents a means of selecting an ultimate pit during design operations of the Hebei Limestone mine. During optimization processes of the mine, many pit shells were created using Whittle Software. Normally, Whittle Software optimizes these processes and assigns a revenue factor of 1 for the ultimate pit. Unfortunately, the pit shells created did not satisfy the criteria with a revenue factor of 1 based on the parameters. As a result of this, statistical analysis was implemented to further understand the relationship, variability, and correlation of the pit shells created (data). Correlation Analysis, K-means++ Analysis, Principal Component Analysis, and Generalized Linear models were used in the analysis of the pit shells created. The results portray a salient relationship of the optimization variables. In addition, the proposed method was tested on Whittle Sample projects which satisfy the selection of ultimate pit selection with a revenue factor of 1. The results show that the proposed model produced almost the same results as the Whittle model with a revenue factor of 1 and was also able to determine the ultimate pit in cases which did not satisfy the Whittle selection criteria.
机译:终极坑可能影响矿井生活中的其他方面,例如经济,技术,环境和社会方面。是什么让它更加复杂的是,大多数人通常都有许多在经济上可掠夺的凹坑。这需要一种启发式方法来确定这些坑中的哪一个是最终的坑。本研究提出了一种在河北石灰石矿设计业务期间选择最终坑的手段。在矿井的优化过程中,使用Whittle软件创建许多坑壳。通常,Whittle软件优化这些过程,并为最终坑分配1的收入因子。不幸的是,创建的坑壳并没有满足基于参数的收入因子的标准。结果,实施统计分析以进一步了解创建的坑壳的关系,可变性和相关性(数据)。相关性分析,K-Means ++分析,主成分分析和广义线性模型用于分析创建的坑壳。结果描绘了优化变量的显着关系。此外,在削弱样品项目上测试了该方法,该项目满足了终极坑选择的选择,其收入因子为1.结果表明,该模型几乎与什米特模型产生了几乎相同的结果,其收入因子为1和在不满足班选择标准的情况下,还能够确定最终坑。

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