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Generalized Predictive Controller for Ball Mill Grinding Circuit in the Presence of Feed-grindability Variations

机译:存在磨削性变化的球磨机磨削回路的通用预测控制器

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Feed-grindability variations (clinker hardness) in cement grinding circuit affects the product quality and productivity of the cement plant. This investigation proposes a generalized predictive controller for cement grinding circuit that is more robust to feed-grindability variations. The main building block of the proposed controller is a new model for cement grinding circuit that directly relates product quality with elevator current and main drive load. The advantage of the model is that the effect of feed-grindability variations on product quality can be easily observed from the output. To develop such a model, this investigation adapts a data driven modelling approach. Experimental data obtained as measurements from cement grinding circuit in a cement mill located near Chennai, India is used to develop the transfer function model based on least squares approach. The model obtained from data driven modelling is used to design a generalized predictive controller whose objective is to optimize the product quality in the presence of feed-grindability variations without breaching physical and operational limits of the cement grinding circuit. The tuning parameters of the proposed generalized predictive controller is adjusted to meet performance metrics specific to cement industries. Our results show that the proposed controller provides better product quality in the presence of feed-grindability variations than other optimization based controllers such as the linear quadratic regulator.
机译:水泥研磨回路中的进料可磨性变化(熟料硬度)会影响水泥厂的产品质量和生产率。这项研究提出了一种适用于水泥粉磨电路的通用预测控制器,该控制器对进料可磨性的变化更为稳定。所提出的控制器的主要组成部分是水泥粉磨电路的新模型,该模型直接将产品质量与电梯电流和主驱动负载联系起来。该模型的优势在于,可从输出中轻松观察到饲料可磨性变化对产品质量的影响。为了开发这样的模型,本研究采用了数据驱动的建模方法。从位于印度金奈附近的水泥厂的水泥研磨回路获得的实验数据用于建立基于最小二乘法的传递函数模型。从数据驱动的建模中获得的模型用于设计通用预测控制器,其目标是在存在进料可磨性变化的情况下优化产品质量,而不会违反水泥研磨回路的物理和操作限制。调整提出的广义预测控制器的调整参数,以满足水泥行业特有的性能指标。我们的结果表明,与其他基于优化的控制器(例如线性二次调节器)相比,所提出的控制器在存在可磨性的情况下可提供更好的产品质量。

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