Simultaneous communication in noisy channels
Amit Weinstein

TL;DR
This paper investigates the limits of simultaneous communication over noisy channels to multiple users, characterizing feasible rate vectors and providing complete solutions for simple cases, extending Shannon capacity concepts.
Contribution
It introduces a comprehensive framework for feasible rate vectors in multi-user noisy channels and fully characterizes the simplest non-trivial cases, expanding classical Shannon capacity results.
Findings
Characterization of feasible rate vectors for various noise scenarios
Complete solution for two users with alphabet size three
Extension of Shannon capacity to multi-user communication channels
Abstract
A sender wishes to broadcast a message of length over an alphabet to users, where each user , should be able to receive one of possible messages. The broadcast channel has noise for each of the users (possibly different noise for different users), who cannot distinguish between some pairs of letters. The vector is said to be feasible if length encoding and decoding schemes exist enabling every user to decode his message. A rate vector is feasible if there exists a sequence of feasible vectors such that . We determine the feasible rate vectors for several different scenarios and investigate some of their properties. An interesting case discussed is when one user can only distinguish between all the letters…
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