Title :
Architectures for Distributed Controller With Sub-Controller Communication Uncertainty
Author :
Yadav, Vikas ; Salapaka, Murti V. ; Voulgaris, Petros G.
Author_Institution :
Garmin Int., Olathe, KS, USA
Abstract :
Recent technology has led to systems with architectures that distribute the controller effort over sub-controllers to respect information flow and/or resource constraints. The associated communication uncertainty between sub-controllers partly governs the performance of the controller. The related controller synthesis methodology has to address internal stability concerns and has to incorporate the effect of communication uncertainty into the performance metric. In this article, it is demonstrated that different canonical distributed architectures derived from a centralized design can result in appreciably different performance. Architectures of information flow that result in convex optimization problems are developed and synthesis methods to incorporate robustness with respect to model uncertainty of communication channels are obtained. The efficacy of the approach is demonstrated on application problems.
Keywords :
control system synthesis; convex programming; distributed control; matrix algebra; robust control; telecommunication channels; uncertain systems; canonical distributed architecture; communication channel; communication uncertainty; controller synthesis methodology; convex optimization; distributed controller architecture; internal stability; model uncertainty; performance metric; subcontroller; Communication channels; Communication system control; Control system synthesis; Control systems; Distributed control; Measurement; Optimization methods; Robustness; Stability; Uncertainty; Banded structure; Youla parameter; communication noise; coprime factorization; distributed system; nested system; observer based controller; structured system; uncertainty;
Journal_Title :
Automatic Control, IEEE Transactions on
DOI :
10.1109/TAC.2010.2047422