Title :
Broadcasting correlated Gaussian sources with bandwidth expansion
Author :
Behroozi, Hamid ; Alajaji, Fady ; Linder, Tamás
Author_Institution :
Dept. of Math. & Stat., Queen´´s Univ., Kingston, ON, Canada
Abstract :
We study hybrid digital-analog (HDA) joint source-channel coding schemes for the transmission of a bivariate Gaussian source S = (S1, S2) across a power-limited two-user Gaussian broadcast channel. User i (i = 1, 2) observes the transmitted signal corrupted by Gaussian noise with power ¿i 2 and wants to estimate the ith component of the source, Si. We consider HDA coding schemes with bandwidth expansion and analyze the region of (squared-error) distortion pairs that are simultaneously achievable. We first adapt an HDA scheme proposed by Reznic, Feder and Zamir in for broadcasting a single common source and use it to provide an achievable distortion region for broadcasting correlated sources. We also consider a three-layered coding scheme, which we refer to by the HWZ scheme, and which consists of an analog layer and two layers each consisting of a Wyner-Ziv coder followed by a channel coder. We also examine numerical examples which indicate that the HWZ scheme performs similarly to the adapted Reznic-Feder-Zamir scheme. For comparison, we adapt the outer bound for the set of all achievable distortion pairs in broadcasting correlated Gaussian sources with matched source-channel bandwidth to the bandwidth expansion case.
Keywords :
Gaussian channels; Gaussian noise; broadcast channels; combined source-channel coding; Gaussian noise; Reznic-Feder-Zamir scheme; Wyner-Ziv coder; bandwidth expansion; channel coder; hybrid digital-analog joint source-channel coding schemes; matched source-channel bandwidth; squared-error distortion; three-layered coding scheme; two-user Gaussian broadcast channel; AWGN; Bandwidth; Broadcasting; Channel coding; Conferences; Digital-analog conversion; Gaussian noise; Information theory; Mathematics; Statistics;
Conference_Titel :
Information Theory Workshop, 2009. ITW 2009. IEEE
Conference_Location :
Taormina
Print_ISBN :
978-1-4244-4982-8
Electronic_ISBN :
978-1-4244-4983-5
DOI :
10.1109/ITW.2009.5351249