Title :
Feedback controller design for a spatially distributed system: the paper machine problem
Author :
Stewart, Gregory E. ; Gorinevsky, Dimitry M. ; Dumont, Guy A.
Author_Institution :
Honeywell Ind. Solutions, Vancouver, BC, Canada
Abstract :
This paper reports on the development and implementation of an algorithm for the design of spatially distributed feedback controllers for the wide variety of physical processes that are included in cross-directional (CD) control of industrial paper machines. The spatial and temporal structure of this class of process models is exploited in the use of the 2D frequency domain for analysis and 2D loop shaping design of feedback controllers. This algorithm forms the basis of a software tool that has recently been implemented in a commercial product and its use is illustrated for tuning CD controllers on two different industrial paper machines. The first example describes the use of the tool in stabilizing an unstable closed-loop system by retuning the distributed controller. The second paper machine example exposes an underperforming controller. Subsequent retuning of the controller resulted in a dramatic performance improvement.
Keywords :
closed loop systems; control system synthesis; distributed control; feedback; frequency-domain analysis; paper industry; process control; software tools; stability; 2D frequency domain; 2D loop shaping design; CD control; controller retuning; cross-directional control; feedback controller design; paper machine problem; software tool; spatial structure; spatially distributed system; stabilization; temporal structure; unstable closed-loop system; Adaptive control; Algorithm design and analysis; Distributed control; Distributed feedback devices; Electrical equipment industry; Frequency domain analysis; Industrial control; Paper making machines; Software algorithms; Software tools;
Journal_Title :
Control Systems Technology, IEEE Transactions on
DOI :
10.1109/TCST.2003.816420