DUAL ADAPTIVE-CONTROL OF CHIP REFINER MOTOR LOAD

Citation
Bj. Allison et al., DUAL ADAPTIVE-CONTROL OF CHIP REFINER MOTOR LOAD, Automatica, 31(8), 1995, pp. 1169-1184
Citations number
24
Categorie Soggetti
Controlo Theory & Cybernetics","Robotics & Automatic Control
Journal title
ISSN journal
00051098
Volume
31
Issue
8
Year of publication
1995
Pages
1169 - 1184
Database
ISI
SICI code
0005-1098(1995)31:8<1169:DAOCRM>2.0.ZU;2-J
Abstract
A characteristic of wood chip refiners is that the static gain between the input (plate gap) and the output (motor load) is both nonlinear a nd time-varying, with reversal in the sign of the gain indicating the onset of pulp pad collapse towards lower values of the plate gap. The control objective is to regulate the motor load while avoiding pad col lapse. The problem is principally stochastic in nature, since the gap at which gain reversal occurs can wander unpredictably. The control st rategies developed in this paper are based primarily on viewing the re finer as a plant with uncertain linear characteristics. The proposed s trategy consists of a multimodel parameter estimator (AFMM), a new act ive suboptimal dual controller, and some simple heuristic logic to dea l with the nonlinearities. Several different combinations were evaluat ed by conducting a series of trials on an industrial refiner. The resu lts show that while a more conventional estimator might have been used , the extra effort required to implement the dual controller appears t o have been worthwhile, since probing aided significantly in the ident ification of gain changes and helped to prevent turn-off. The results also show that a variable retract strategy worked better than using a constant retract term for preventing operation in the pad collapse reg ion, and that the control performance could be improved by identifying the maximum load the first time a pad collapse is encountered, and th en using this information to set an upper limit on the set point.