Title :
Stabilization of noisy plants over a Gaussian interference channel
Author :
Zaidi, A.A. ; Oechtering, Tobias J. ; Skoglund, Mikael
Author_Institution :
Dept. of Signals & Syst., Chalmers Univ. of Technol., Gothenburg, Sweden
Abstract :
Remote stabilization of two noisy linear plants over a symmetric Gaussian interference channel with possibly noisy feedback from controllers to the plants is studied. Each plant is monitored by a separate sensor which communicates its observations to a separate controller over a Gaussian interference channel. The controllers aim at stabilizing the two plants in mean-square sense. The plant noise is assumed to be additive white Gaussian distributed. A delay-free sensing and control scheme is proposed, which is an adaptation of the Schalkwijk-Kailath type coding schemes developed for transmission of reliable information over channels with noiseless feedback. The conditions that guarantee the stabilization of the noisy plants under the proposed scheme are derived, extending the results that are known for mean-square stabilization of noiseless plants over noiseless feedback channels. Numerical results indicate that the stabilizability is not affected by the inclusion of an additive Gaussian noise in the plant models under the proposed scheme.
Keywords :
AWGN; Gaussian channels; Gaussian distribution; channel coding; discrete time systems; interference (signal); mean square error methods; networked control systems; stability; Gaussian interference channel; Schalkwijk-Kailath type coding; additive white Gaussian noise; mean square stabilization; noiseless feedback channels; noisy linear plants; noisy plants; plant noise; remote stabilization; Decoding; Interference channels; Noise; Noise measurement; Polynomials; Sensors; Stability analysis;
Conference_Titel :
Communication and Information Theory (IWCIT), 2014 Iran Workshop on
Conference_Location :
Tehran
Print_ISBN :
978-1-4799-4878-9
DOI :
10.1109/IWCIT.2014.6842510