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A Practical Approach to Truck Dispatch for Open Pit Mines

机译:露天矿山卡车派遣的实用方法

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According to the literature, material transportation represents 50 per cent of the operating costs for an open pit mine. In this context, this paper proposes a multistage approach for dynamic truck dispatching in real open pit mine environments, implemented in the commercial package SmartMine?, marketed by Devex SA. The fi rst stage of this approach defi nes the optimal number of trucks that maximises the tonnage production by means of a robust linear programming model, which considers the operational constraints of a real mining process. The second stage uses a dynamic dispatching heuristic joining computational simulation and multicriterion optimisation techniques for decision making for truck dispatching. Another relevant contribution of this work is the publication of realistic instances collected from a dispatching system managing an iron mine, containing information about the hauling and loading fl eet, the equipment situation when the working shift starts, cycle times, the time line of special occurrences (such as equipment stoppages and loading equipment reallocation in order to satisfy the mine planning) and the tonnage produced. These instances were generated with the purpose of submitting the method to the test of a real situation that considers the uncertainties existing in the process studied. The proposed approach was validated by means of a discrete event simulation model applied to the previously designated instances. Using this multistage approach as a mechanism for dispatch decision making, it is shown that the haulage fl eet productivity increased when compared with the real values reported from the instances. These results are important because they show that the proposed approach generates effi cient dispatch decisions for trucks operating in a real environment, reducing operating costs, increasing production and making the mine more competitive.
机译:根据文献,材料运输代表露天矿井的运营成本的50%。在这方面,本文提出了一种在实际露天矿井环境中调度的动态卡车传派的多级方法,在商业包中实施了Devex SA的营销。这种方法的第一阶段定义了通过强大的线性编程模型最大化吨位生产的最佳卡车数,这考虑了实际采矿过程的操作系统。第二阶段使用动态调度启发式连接计算仿真和多电场优化技术,以进行卡车调度的决策。这项工作的另一个有关贡献是从调度系统中收集的现实情况的出版,其中包含有关拖运和加载流动的信息,设备情况在工作班次开始,循环时间,特殊事件时间线时(如设备停工和装载设备重新分配,以满足矿山规划)和生产的吨位。这些实例是以提交该方法的目的,以测试考验所研究的过程中存在的不确定性的真实情况。通过应用于先前指定的实例的离散事件仿真模型来验证所提出的方法。使用这种多级方法作为调度决策的机制,结果表明,与从实例报告的实际值相比,运输拖运流量的生产率增加。这些结果很重要,因为它们表明,所提出的方法为在真实环境中运行的卡车产生效率的派遣决策,降低运营成本,增加生产,使矿井更具竞争力。

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