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Optimal hoist scheduling of a deep level mine twin rock winder system for demand side management

机译:需求侧管理的深水矿井双岩卷绕系统最优提升调度

摘要

This paper presents a near optimal hoist scheduling and control program for rock winders found in South African deep level mines in the context of demand side management and time-of-use (TOU) tariffs. The objective is to achieve a set hoist target at minimum energy cost within various system constraints. The development of a discrete dynamic and constrained mixed integer linear programming model for a twin rock winder system is presented on which a half-hourly model predictive control(MPC)algorithm containing an adapted branch and bound methodology is applied for near optimal scheduling. Simulation results illustrate the effectiveness of the control program by minimising the energy costs through scheduling according to the TOU tariff and controlling output and ore levels within their boundaries even in the case of significant random delays in the system. Scheduling according to the TOU tariff shows a possible 30.8% reduction in energy cost while approximately 6h of delays in the system resulted in a mere 14 increase in energy cost.
机译:本文介绍了在需求方管理和使用时间(TOU)费率的背景下,针对南非深层矿山中的络筒机的最佳提升计划和控制程序。目的是在各种系统限制内以最小的能源成本实现设定的提升目标。提出了一种用于双岩石绕线机系统的离散动态受限混合整数线性规划模型的开发方法,该模型采用半小时模型预测控制(MPC)算法,该算法包含自适应分支定界方法,用于近似最优调度。仿真结果通过根据TOU费率进行调度并在其边界内控制输出和矿石水平(即使在系统中存在重大随机延迟的情况下),通过将能源成本降至最低来说明控制程序的有效性。根据TOU费率进行的计划显示,能源成本可能降低30.8%,而系统延迟约6小时只会使能源成本仅增加14。

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