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A hybrid formulation and design of model predictive control for systems under actuator saturation and backlash

机译:执行器饱和和反冲下系统的模型预测控制的混合表示和设计

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In this paper, we develop a hybrid design framework of model predictive controller (MPC) for multivariable systems that simultaneously and explicitly addresses the actuator saturation and backlash. The discrete characteristics of the actuator backlash allows us to mathematically express it as a set of mixed-integer linear inequalities constraint in the inputs. As a result, the constrained MPC design is formulated as solving a mixed-integer quadratic programming (MIQP) problem. Furthermore, the proposed MIQP-based design is applied only in the proximity of steady state operating points after locating the active backlash and providing the estimate of the backlash size. Simulation studies are presented to demonstrate how the hybrid MPC performs when applied to an industrial case study of fluid catalytic cracking unit. It is shown that in the presence of actuator saturation and backlash the closed-loop performance can be improved substantially when applying the hybrid method as compared to the traditional design approaches. (C) 2006 Elsevier Ltd. All rights reserved.
机译:在本文中,我们为多变量系统开发了模型预测控制器(MPC)的混合设计框架,该框架同时并明确地解决了执行器的饱和度和间隙。执行器间隙的离散特性使我们可以将其数学表示为输入中的一组混合整数线性不等式约束。结果,受约束的MPC设计被公式化为解决混合整数二次规划(MIQP)问题。此外,提出的基于MIQP的设计仅在找到有效齿隙并提供齿隙大小的估计值后,才应用于稳态工作点附近。进行仿真研究以证明混合MPC在应用于流化催化裂化装置的工业案例研究时的性能。结果表明,与传统设计方法相比,在存在执行器饱和和反冲的情况下,应用混合方法时,闭环性能可以得到显着改善。 (C)2006 Elsevier Ltd.保留所有权利。

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