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Data-Driven Optimization Control for Safety Operation of Hematite Grinding Process

机译:赤铁矿磨削过程安全运行的数据驱动优化控制

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摘要

Grinding particle size (GPS) of a hematite grinding process (HGP) is characteristic of sensitivity to disturbances of ore hardness and size distribution, difficulty in establishing a mathematic model, and absence of measurement, which make the existing operational optimization and control approaches difficult to be applied. This leads to that it is always difficult to obtain a proper ore feed rate and water flow rate during process operation, and consequently, overload fault often occurs. To tackle this problem, based on characteristic analysis of GPS, a GPS prediction algorithm is first developed using an improved neural network (NN), and a data-driven optimization control approach for safety operation of HGP is proposed. The proposed method adopts a two-layer structure, the higher-level operational feedback control, and lower-level basic loop control. The operational feedback control consists of a cascade NN-based loop setpoint optimizer and an overload diagnosis and self-healing controller. The main advantage of the proposed method is that it requires only the available operating data, without knowing the process dynamics. Experiments have been carried out in a self-developed hardware-in-the-loop experiment system with actual data, demonstrating that the proposed method cannot only keep the HGP operation from mill overload fault but also achieve the optimization control with respect to the quadratic performance index of GPS deviation.
机译:赤铁矿磨削工艺(HGP)的磨削粒度(GPS)具有对矿石硬度和粒度分布扰动的敏感性,难以建立数学模型以及缺乏测量的特征,这使得现有的操作优化和控制方法难以实现被应用。这导致在过程操作期间始终难以获得合适的矿石进料速度和水流量,因此,经常会发生过载故障。针对这一问题,基于GPS的特征分析,首先利用改进的神经网络(NN)开发了一种GPS预测算法,并提出了一种数据驱动的HGP安全运行优化控制方法。所提出的方法采用两层结构,即较高级别的操作反馈控制和较低级别的基本环路控制。操作反馈控制由一个基于神经网络的级联回路设定点优化器和一个过载诊断与自愈控制器组成。所提出的方法的主要优点在于,它仅需要可用的操作数据,而无需了解过程动态。在一个具有实际数据的自行开发的在环硬件实验系统中进行了实验,表明所提出的方法不仅可以使HGP运行不受轧机过载故障的影响,而且可以实现针对二次性能的优化控制。 GPS偏差指数。

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