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High-order Volterra Model Predictive Control and its application to a nonlinear polymerisation process
Authors:Email author" target="_blank">Yun?LiEmail author  Hiroshi?Kashiwagi
Affiliation:(1) Department of Electronics and Electrical Engineering, University of Glasgow, Rankine Building, Glasgow, G12 8LT, UK;(2) Kumamoto Study Center, The University of the Air, c/o Sojo University, Kumamoto 860-0082, Japan
Abstract:Model Predictive Control (MPC) has recently found wide acceptance in the process industry, but existing design and implementation methods are restricted to linear process models. A chemical process, however, involves severe nonlinearity which cannot be ignored in practice. This paper aims to solve this nonlinear control problem by extending MPC to accommodate nonlinear models. It develops an analytical framework for nonlinear model predictive control (NMPC). It also offers a third-order Volterra series based nonparametric nonlinear modelling technique for NMPC design, which relieves practising engineers from the need for deriving a physical-principles based model first. An on-line realisation technique for implementing NMPC is then developed and applied to a Mitsubishi Chemicals polymerisation reaction process. Results show that this nonlinear MPC technique is feasible and very effective. It considerably outperforms linear and low-order Volterra model based methods. The advantages of the developed approach lie not only in control performance superior to existing NMPC methods, but also in eliminating the need for converting an analytical model and then convert it to a Volterra model obtainable only up to the second order.
Keywords:Model predictive control  Volterra series  process control  nonlinear control  
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