A Deviation-Minimization Approach to Short-Term Underground Mine Schedule Optimization - Mining, Metallurgy & Exploration (2023)
- Organization:
- Society for Mining, Metallurgy & Exploration
- Pages:
- 17
- File Size:
- 1856 KB
- Publication Date:
- Sep 6, 2023
Abstract
Production forecasts derived from the medium-term schedule represent the best path forward for underground mining operations
to achieve corporate and operational goals. Unforeseen circumstances, such as equipment breakdown, can cause
significant deviations from established production forecasts in the short term. Such situations require timely mitigation of the
effects of the deviations in order to stay as close as possible to the medium-term plan. This paper presents a deterministic
mathematical formulation for short-term scheduling that addresses this challenge. The formulation is able to make up for
deficits resulting from operational disruptions by minimizing deviations from medium-term production goals and mediumterm
activity start dates. We demonstrate this in a case study by simulating disruptions involving reduction in ore extraction
capacity and development advance rate. Aside from the rescheduling capability, this formulation can help mine planners
conduct analysis on the impact of various disruptions on the schedule. The formulation can help identify those conditions or
disruptions that are more detrimental to the achievement of forecast targets, or otherwise. The formulation also affords mine
planners the flexibility to prioritize one production goal over the other, depending on operational conditions at the mine. In
the future, we seek to incorporate in the formulation respirable dust, diesel particulate matter, and ventilation constraints in
order to create more realistic schedules and enhance miners’ health and safety.
Citation
APA: (2023) A Deviation-Minimization Approach to Short-Term Underground Mine Schedule Optimization - Mining, Metallurgy & Exploration (2023)
MLA: A Deviation-Minimization Approach to Short-Term Underground Mine Schedule Optimization - Mining, Metallurgy & Exploration (2023). Society for Mining, Metallurgy & Exploration, 2023.