Shannon Bounds on Lossy Gray-Wyner Networks

02/02/2022
by   Erixhen Sula, et al.
0

The Gray-Wyner network subject to a fidelity criterion is studied. Upper and lower bounds for the trade-offs between the private sum-rate and the common rate are obtained for arbitrary sources subject to mean-squared error distortion. The bounds meet exactly, leading to the computation of the rate region, when the source is jointly Gaussian. They meet partially when the sources are modeled via an additive Gaussian "channel". The bounds are inspired from the Shannon bounds on the rate-distortion problem.

READ FULL TEXT

page 1

page 2

page 3

page 4

research
02/02/2020

The Gaussian lossy Gray-Wyner network

We consider the problem of source coding subject to a fidelity criterion...
research
05/16/2018

Remote Source Coding under Gaussian Noise : Dueling Roles of Power and Entropy Power

The distributed remote source coding (so-called CEO) problem is studied ...
research
01/19/2022

On Distributed Lossy Coding of Symmetrically Correlated Gaussian Sources

In this paper, we consider a distributed lossy compression network with ...
research
03/11/2023

Rate-Distortion Analysis for Semantic-Aware Multi-Terminal Source Coding Problem

A novel distributed source coding model which named semantic-aware multi...
research
11/27/2017

The Time-Invariant Multidimensional Gaussian Sequential Rate-Distortion Problem Revisited

We revisit the sequential rate-distortion (SRD) trade-off problem for ve...
research
06/10/2019

Sequential Source Coding for Stochastic Systems Subject to Finite Rate Constraints

In this paper, we apply a sequential source coding framework to analyze ...
research
02/03/2012

Lossy Compression via Sparse Linear Regression: Performance under Minimum-distance Encoding

We study a new class of codes for lossy compression with the squared-err...

Please sign up or login with your details

Forgot password? Click here to reset