DocumentCode :
1921106
Title :
A model based approach for estimation and control for polymer compounding (April 2003)
Author :
Kumar, Aditya ; Eker, S. Alper ; Houpt, Paul K.
Author_Institution :
Autom. & Control Lab., Gen. Electr. Global Res. Center, Niskayuna, NY, USA
Volume :
1
fYear :
2003
fDate :
23-25 June 2003
Firstpage :
729
Abstract :
The objective of this work is to develop a framework for improved operation of extruders in a wide range of applications by incorporating intelligent means for: (i) online product quality estimation (inferential sensing), (ii) diagnostics for common process/material failures, and (iii) closed-loop control of product quality based on the online estimation. The current practice in the industry is limited by inadequate use or even lack of online measurements, infrequent and expensive off-line lab analysis of product samples and non-existent process controls that lead to significantly reduced productivity. In this work, we have developed a novel model-based approach for the estimation, diagnostics and controls in a unified framework. In this paper, we focus on the online estimation and control. In particular, we demonstrate the model-based approach to viscosity estimation and closed-loop control through experiment runs on a lab-scale ZSK 25 mm extruder.
Keywords :
closed loop systems; extrusion; fault diagnosis; parameter estimation; polymers; process control; real-time systems; closed loop control; inferential sensing; material failure diagnosis; off line lab analysis; online product quality estimation; polymer compounding; process control; process failure diagnosis; product samples; productivity; viscosity estimation; Automotive engineering; Costs; Optical computing; Polymers; Process control; Productivity; Recycling; Resins; Viscosity; Waste materials;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Control Applications, 2003. CCA 2003. Proceedings of 2003 IEEE Conference on
Print_ISBN :
0-7803-7729-X
Type :
conf
DOI :
10.1109/CCA.2003.1223528
Filename :
1223528
Link To Document :
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