How to improve mine planning efficiency by 20 times?
π Breakthrough in mining: scientists have developed an innovative approach for open-pit mineral deposit planning!
π‘ Core Technology:
A hybrid algorithm combining:
β Parametric analysis of pit limits;
β Integer programming;
β Strategic decision variable fixation.
π Key Advantages:
βοΈ 95% faster calculations (from 8 hours β 24 minutes!);
βοΈ Handles complex deposits with millions of blocks;
βοΈ Generates alternative extraction scenarios;
βοΈ Maintains 97-99% economic efficiency.
π Practical Applications:
β’ Large-scale open pits;
β’ Deposits with challenging geology;
β’ Rapid plan adjustments to market changes.
For more information, see the article:
π Hasozdemir K., ErΓ§elebi S. Enhancing the performance of integer models for addressing the long-term production planning problem in open pit mines by decision variable fixation based on parametric analysis of the final pit limit. Mining Science and Technology (Russia). 2024;9(2):74-84. https://doi.org/10.17073/2500-0632-2023-09-156
Subscribe to our Telegram channel:
π t.iss.one/MinSciTech π
#InEnglish #MST #Mining #Optimization #OpenPit #IntegerProgramming #MiningTech #Innovation #Geology #ResourceManagement #Efficiency #Algorithms #DigitalMining #AI #SustainableMining #DataScience #IndustrialOptimization
π Breakthrough in mining: scientists have developed an innovative approach for open-pit mineral deposit planning!
π‘ Core Technology:
A hybrid algorithm combining:
β Parametric analysis of pit limits;
β Integer programming;
β Strategic decision variable fixation.
π Key Advantages:
βοΈ 95% faster calculations (from 8 hours β 24 minutes!);
βοΈ Handles complex deposits with millions of blocks;
βοΈ Generates alternative extraction scenarios;
βοΈ Maintains 97-99% economic efficiency.
π Practical Applications:
β’ Large-scale open pits;
β’ Deposits with challenging geology;
β’ Rapid plan adjustments to market changes.
For more information, see the article:
π Hasozdemir K., ErΓ§elebi S. Enhancing the performance of integer models for addressing the long-term production planning problem in open pit mines by decision variable fixation based on parametric analysis of the final pit limit. Mining Science and Technology (Russia). 2024;9(2):74-84. https://doi.org/10.17073/2500-0632-2023-09-156
Subscribe to our Telegram channel:
π t.iss.one/MinSciTech π
#InEnglish #MST #Mining #Optimization #OpenPit #IntegerProgramming #MiningTech #Innovation #Geology #ResourceManagement #Efficiency #Algorithms #DigitalMining #AI #SustainableMining #DataScience #IndustrialOptimization
β€1π1π₯1π1π1