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A low cost automatic mill load level control strategy

机译:低成本的轧机负荷水平自动控制策略

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A low cost control strategy has been developed, which can maintain a mill production near optimum, with little operator intervention. The mill load control strategy is based on the use of classic sensors such as mill sound and recirculating bucket elevator power plus the not-so-often used mill motor power. The heart of the strategy consists of a standard PID algorithm for control: therefore, it is not rule-based or considered an expert system. Because of this, there is no requirement for special hardware or additional computers. The control strategy is integrated into the plant's existing control system which provides training and maintenance benefits. The strategy uses the traditional signals such as mill sound and recirculating bucket elevator power as well as the mill power to determine the mill load level. The load level is defined as the total of the grinding charge and material in the mill. The control strategy attempts to keep this load level as constant as possible. The setpoint for the master controller is derived from the mill motor power. The strategy automatically takes into account changes in material grindability, grinding charge, material retention time and different product types. Maintaining a mill load level is accomplished by balancing the mill load level against the power-derived setpoint.
机译:已经开发出了一种低成本控制策略,该策略可以在几乎不需要操作员干预的情况下将轧机产量保持在最佳水平。轧机负荷控制策略基于经典传感器的使用,例如轧机声音和循环斗式提升机功率以及不常用的轧机电机功率。该策略的核心包括用于控制的标准PID算法:因此,它不是基于规则的,也不是专家系统。因此,不需要特殊的硬件或其他计算机。控制策略已集成到工厂现有的控制系统中,该系统可提供培训和维护优势。该策略使用传统信号(例如轧机声音和循环斗式提升机功率以及轧机功率)来确定轧机负荷水平。负载水平定义为磨机中磨料和物料的总和。控制策略试图使该负载水平尽可能保持恒定。主控制器的设定值由轧机电机功率得出。该策略自动考虑材料可磨性,磨料,材料保留时间和不同产品类型的变化。保持轧机负荷水平是通过使轧机负荷水平与功率设定点之间达到平衡来实现的。

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