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On-line control strategies to minimize peak loads on mine conveyor networks using surge units with variable discharging capability

机译:在线控制策略,最大限度地利用具有可变放电能力的浪涌装置最大限度地减少矿井输送机网络的峰值负荷

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Earlier work has shown how differences in material transit times from surge units to transfer points in a mine conveyor network enable precise forecasts of load levels that will be intersected by the discharge of a controlled surge unit over future time intervals. Using these forecasts, control policies can be determined that specify the unit's discharge rates over a planning horizon in a manner that prevents peaks in the combined flow at the transfer point from exceeding belt capacity limits while simultaneously insuring adequate unit through-flow to prevent it from becoming a production bottleneck. This paper first extends this control approach to the case where the differences in transit times between surge units are small. It is shown that multiple units should be considered simultaneously when determining control actions, and a dynamic programming approach is given for determining the optimal control policy in such a situation. Subsequently the application of this approach is considered for longwall mines where flow from the longwall is not controlled but the discharge rates of continuous miner section feeders are adjusted in real time to prevent belt overloading while minimizing any production constraint from the continuous miner units. This application requires special treatment for the highly variable material flow pattern produced by longwalls. The practical utility of these approaches is evaluated through detailed simulation studies.
机译:早期的工作表明,在矿井传送带网络中传递到传送点的材料过渡时期的差异使得能够精确地预测将通过未来的时间间隔放电来耦合的受控电涌单元的相互作用。使用这些预测,可以确定控制策略,该控制策略以防止传送点的组合流程中的组合流量的峰值超出皮带容量限制的方式指定单位的放电速率,同时确保足够的单位流过流动以防止其成为生产瓶颈。本文首先将该控制方法扩展到浪涌单位之间的横向次数较小的情况。结果表明,在确定控制动作时应同时考虑多个单元,并且给出动态编程方法以确定在这种情况下的最佳控制策略。随后,考虑应用这种方法的长壁矿,其中不控制来自长壁的流量,但是实时调节连续矿床进料器的放电速率,以防止皮带过度载荷,同时最小化连续矿工单元的任何生产约束。该应用需要特殊的处理LongWalls产生的高度可变材料流动模式。通过详细的仿真研究评估这些方法的实用效用。

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