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首页> 外文期刊>Journal Of The South African Institute Of Mining & Metallurgy >Early start and late start algorithms to improve the solution time for long-term underground mine production scheduling
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Early start and late start algorithms to improve the solution time for long-term underground mine production scheduling

机译:提前启动和延迟启动算法可缩短地下矿井长期生产计划的求解时间

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摘要

Mixed integer programming (MIP) has been used for optimizing production schedules of mines since the 1960s. The major problem in the long-term production scheduling for an entire orebody is that the number of integer variables needed to formulate an MIP model is too large to solve the formulation. This number may reach well over one hundred thousand. To overcome this difficulty, this paper presents two new algorithms to reduce the size of the problem. These algorithms assign an earliest and latest possible start date for each machine placement, eliminating the integer variables that correspond to machine placement before its early start date and after its late start date. A case study based on Kiruna Mine, the second largest underground mine in the world, is summarized in the paper. It shows substantial improvement in the solution time required using the new algorithms. This increased efficiency in the solution time of the MIP model allows it to be applied to Kiruna Mine, with the potential to increase substantially the net present value (NPV) of the project.
机译:自1960年代以来,混合整数编程(MIP)已用于优化矿山的生产计划。整个矿体的长期生产计划中的主要问题是,公式化MIP模型所需的整数变量数量太大,无法解决公式化问题。这个数字可能会超过十万。为了克服这个困难,本文提出了两种新的算法来减小问题的大小。这些算法为每个机器放置分配了最早和最可能的开始日期,从而消除了与机器放置之前和之后的开始日期对应的整数变量。本文总结了基于世界第二大地下煤矿基律纳煤矿的案例研究。它显示了使用新算法所需的求解时间上的实质性改进。 MIP模型求解时间的这种提高的效率允许将其应用于基律纳矿,并有可能显着提高项目的净现值(NPV)。

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