DocumentCode
59597
Title
On the Capacity Region of the Two-User Interference Channel With a Cognitive Relay
Author
Dytso, Alex ; Rini, Stefano ; Devroye, Natasha ; Tuninetti, Daniela
Author_Institution
Dept. of Electr. & Comput. Eng., Univ. of Illinois at Chicago, Chicago, IL, USA
Volume
13
Issue
12
fYear
2014
fDate
Dec. 2014
Firstpage
6824
Lastpage
6838
Abstract
This paper considers a variation of the classical two-user interference channel where the communication of two interfering source-destination pairs is aided by an additional node that has a priori knowledge of the messages to be transmitted, which is referred to as the cognitive relay. For this interference channel with a cognitive relay (ICCR), novel outer bounds and capacity region characterizations are derived. In particular, for the class of injective semi-deterministic ICCRs, a sum-rate upper bound is derived for the general memoryless ICCR and further tightened for the linear deterministic approximation (LDA) of the Gaussian noise channel at high SNR, which disregards the noise and focuses on the interaction among the users´ signals. The capacity region of the symmetric LDA is completely characterized except for the regime of moderately weak interference and weak links from the CR to the destinations. The insights gained from the analysis of the LDA are then translated back to the symmetric Gaussian noise channel (GICCR). For the symmetric GICCR, an approximate characterization (to within a constant gap) of the capacity region is provided for a parameter regime where capacity was previously unknown. The approximately optimal scheme suggests that message cognition at a relay is beneficial for interference management as it enables simultaneous over the air neutralization of the interference at both destinations.
Keywords
Gaussian channels; Gaussian noise; cochannel interference; cognitive radio; deterministic algorithms; interference suppression; Gaussian noise channel; ICCR; LDA; interference channel with a cognitive relay; interference management; linear deterministic approximation; source-destination; two-user interference channel; Channel models; Gaussian noise; Integrated circuits; Interference channels; Random variables; Relays; Cognitive relay; capacity region; constant gap; interference channel; interference neutralization;
fLanguage
English
Journal_Title
Wireless Communications, IEEE Transactions on
Publisher
ieee
ISSN
1536-1276
Type
jour
DOI
10.1109/TWC.2014.2355826
Filename
6894164
Link To Document