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首页> 外文期刊>International Journal of Mining and Geo-Engineering >Open pit limit optimization using dijkstra’s algorithm
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Open pit limit optimization using dijkstra’s algorithm

机译:使用Dijkstra的算法开放式坑极限优化

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In open-pit mine planning, the design of the most profitable ultimate pit limit is a prerequisite to developing a feasible mining sequence. Currently, the design of an ultimate pit is achieved through a computer program in most mining companies. The extraction of minerals in open mining methods needs a lot of capital investment, which may take several decades. Before the extraction, the pit limit, which influences the stripping ratio, damp locations, ore processing site and access routes, should be designed. So far, a large number of algorithms have been developed to optimize the pit limits. These algorithms are categorized into two groups: heuristic and rigorous. In this paper, a new approach is presented to optimize the pit limit based on Dijkstra’s algorithm which is based on mathematical relations. This algorithm was implemented on a 2D economic graph model and can find the true optimal solution. The results were compared with those from the dynamic programming (DP) algorithm. This algorithm showed to have less time complexity compared to the dynamic programming algorithm and to be easier to write dynamic computer programs.
机译:在露天矿山规划中,最有利可图的最终坑极限的设计是开发可行采矿序列的先决条件。目前,通过大多数矿业公司的计算机程序实现了最终坑的设计。开放采矿方法中的矿物质的提取需要很多资本投资,可能需要几十年。在提取之前,应设计影响剥离比,潮湿地点,矿石处理站点和接入路线的凹坑限制。到目前为止,已经开发了大量算法以优化凹坑限制。这些算法被分为两组:启发式和严谨。本文提出了一种新方法,以优化基于Dijkstra的算法基于数学关系的算法。该算法在2D经济图模型上实现,可以找到真正的最佳解决方案。将结果与来自动态编程(DP)算法的结果进行了比较。该算法与动态编程算法相比,该算法具有更少的时间复杂性,并更容易编写动态计算机程序。

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