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Improved Disturbance Observer (DOB) Based Advanced Feedback Control for Optimal Operation of a Mineral Grinding Process

机译:基于改进扰动观测器(DOB)的先进反馈控制,用于矿磨过程的最佳运行%基于改进扰动观测器(DOB)的高级反馈控制,用于矿磨过程的最佳运行

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摘要

Advanced feedback control for optimal operation of mineral grinding process is usually based on the model predictive control (MPC) dynamic optimization. Since the MPC does not handle disturbances directly by controller design, it cannot achieve satisfactory effects in controlling complex grinding processes in the presence of strong disturbances and large uncertainties. In this paper, an improved disturbance observer (DOB) based MPC advanced feedback control is proposed to control the multivariable grinding operation. The improved DOB is based on the optimal achievable H 2 performance and can deal with disturbance observation for the nonminimum-phase delay systems. In this DOB-MPC advanced feedback control, the higher-level optimizer computes the optimal operation points by maximize the profit function and passes them to the MPC level. The MPC acts as a presetting controller and is employed to generate proper pre-setpoint for the lower-level basic feedback control system. The DOB acts as a compensator and improves the operation performance by dynamically compensating the setpoints for the basic control system according to the observed various disturbances and plant uncertainties. Several simulations are performed to demonstrate the proposed control method for grinding process operation.
机译:通常,基于模型预测控制(MPC)的动态优化可实现用于矿磨过程最佳操作的高级反馈控制。由于MPC不能直接通过控制器设计来处理干扰,因此在存在强烈干扰和较大不确定性的情况下,它无法在控制复杂的磨削过程中获得令人满意的效果。本文提出了一种基于改进的扰动观测器(DOB)的MPC高级反馈控制来控制多变量磨削操作。改进的DOB基于最佳的H 2性能,可以处理非最小相位延迟系统的干扰观测。在此DOB-MPC高级反馈控制中,高级优化器通过最大化利润函数来计算最佳操作点,并将其传递到MPC级别。 MPC用作预设控制器,并用于为较低级别的基本反馈控制系统生成适当的预设值。 DOB充当补偿器,并根据观察到的各种干扰和设备不确定性动态补偿基本控制系统的设定值,从而提高操作性能。进行了一些模拟,以证明所提出的用于磨削过程操作的控制方法。

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