Title :
Stabilization of networked systems under computational power constraints
Author :
Matveev, Alexey S. ; Savkin, Andrey V.
Author_Institution :
Dept. of Math. & Mech., St. Petersburg Univ., St. Petersburg, Russia
Abstract :
The paper considers stabilization under communication errors and limited data rate by means of realistic controllers with bounded (as time progresses) computational powers. Discrete-time partially observed noisy linear systems are studied for which the sensor signals are communicated to the controller over a finite capacity stochastic digital link. Addressed is stabilization in probability. It is shown that stability cannot typically be achieved by means of a finite memory decoder-controller so far as the boundary of the corresponding stabilizability domain is given by the zero-error capacity of the channel, which is typically zero. At the same time, stability can be achieved with keeping the expected values of the consumed computational resources bounded: the boundary of the domain where stabilization can be ensured by a coder and decoder with bounded expected computational powers is given by the ordinary Shannon capacity of the noisy channel.
Keywords :
decoding; discrete time systems; information theory; linear systems; networked control systems; probability; sensors; stability; bounded expected computational powers; coder; communication errors; computational power constraints; computational resources; data rate; discrete-time partially observed noisy linear systems; finite capacity stochastic digital link; finite memory decoder-controller; networked systems; noisy channel; ordinary Shannon capacity; probability; realistic controllers; sensor signals; stabilizability domain; zero-error capacity; Channel capacity; Decoding; Feedback communications; Noise; Noise measurement; Upper bound; Vectors;
Conference_Titel :
Control Conference (ECC), 2009 European
Conference_Location :
Budapest
Print_ISBN :
978-3-9524173-9-3