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Production Scheduling Optimisation in a Nickel Laterite Deposit: MIP and LP Applications and Infeasibility in the Presence of Orebody Variability

机译:生产调度优化在镍后矿床:MIP和LP应用以及矿体变异性存在下的可行性

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Optimisation and mathematical formulations for open pit design and long-term production scheduling have been available since the 1960s. There are two main concerns in the application of existing mixed integer programming (MIP) models in open pit mines: a. the feasibility of generating both optimal solutions and practically mineable scheduling patterns and b. the inability to deal with in situ variability in orebodies and account for uncertainty. In dealing with these issues, a general open pit production scheduling method for multi-element deposits is presented and subsequently used to optimise the long-term production schedule in a nickel laterite deposit. The application shows the weaknesses of MIP formulations in terms of generating optimal solutions as well as practically feasible mining patterns. The application of the same formulation in the presence of in situ orebody variability and uncertainty uncovers a major reason for deviations of scheduled production from actual production, and outlines additional limits of traditional optimisation formulations as well as future needs.
机译:自20世纪60年代以来,可提供露天坑设计和长期生产调度的优化和数学制片。在露天矿山中的现有混合整数编程(MIP)模型的应用中有两个主要问题:a。产生最佳解决方案和实际上可弥置的调度模式和B.的可行性。无法在矿石中处理原位变异性,并占不确定性。在处理这些问题时,提出了一种用于多元素沉积物的一般露天坑生产调度方法,随后用于优化镍红土沉积物中的长期生产计划。该应用显示了MIP制剂的弱点,以产生最佳解决方案以及实际上可行的采矿模式。在原位矿体变异性和不确定性存在下,在存在相同的制剂的应用揭示了预定生产从实际生产的主要原因,并概述了传统优化制剂的额外限制以及未来的需求。

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