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首页> 外文期刊>Journal of Process Control >Design of output constraints for model-based non-square controllers using interval operability
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Design of output constraints for model-based non-square controllers using interval operability

机译:基于区间可操作性的基于模型的非平方控制器的输出约束设计

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摘要

A steady-state interval operability methodology is introduced here for multivariable non-square systems with fewer inputs than output variables to be used in the design of model-based constrained controllers (MPC, DMC). For such systems, set-point control is not possible for all the outputs and interval control is needed. The proposed iterative approach enables the selection of the needed interval constraints systematically, so that the tightest possible control is achieved without rendering the control problem infeasible. The application of this methodology to high-dimensional industrial problems characterizing processes of Air Products and Chemicals and DuPont shows that very significant reduction of the constrained region can be achieved from the steady-state point of view. Ratios of the initial to the calculated volume of the constrained regions examined range between 10(4) and 10(8). (C) 2007 Elsevier Ltd. All rights reserved.
机译:本文介绍了一种稳态间隔可操作性方法,该方法用于多变量非平方系统,其输入少于输出变量,可用于基于模型的约束控制器(MPC,DMC)的设计。对于此类系统,不可能对所有输出都进行设定点控制,因此需要间隔控制。所提出的迭代方法使得能够系统地选择所需的间隔约束,从而实现最严格的控制而不会导致控制问题不可行。将该方法应用于表征空气产品和化学制品以及杜邦过程的高维工业问题表明,从稳态的角度来看,可以显着减少约束区域。约束区域的初始体积与计算体积之比在10(4)和10(8)之间。 (C)2007 Elsevier Ltd.保留所有权利。

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