DocumentCode :
1304345
Title :
Capacity and Coding for Two Common Wireless Erasure Relay Networks with Optimal Bandwidth Allocation
Author :
Puducheri-Sundaravaradhan, Srinath ; Fuja, Thomas E.
Volume :
11
Issue :
12
fYear :
2012
fDate :
12/1/2012 12:00:00 AM
Firstpage :
4308
Lastpage :
4317
Abstract :
This paper considers two simple wireless network configurations - the multiple access relay channel (MARC) and the multiple relay channel (MRC) - in which the links making up the network time-share the medium and the assumed loss mechanisms are memoryless packet erasures. The capacity region of the MARC and the capacity of the MRC are derived as functions of the link erasure rates. This is done assuming (i) optimal sharing of bandwidth among the transmitters, and (ii) perfect knowledge at the destination of erasure patterns on all the links. Moreover, it is shown that easily-implemented capacity-approaching codes for the binary erasure channel, such as LDPC or Tornado codes, can be used to attain any achievable rate(s). Finally, these capacity results are unchanged in the presence of feedback of erasure location information to all nodes. For the erasure MARC, the results imply a simple strategy, viz., that the relay should help only those sources that have a weaker direct channel to the destination than the relay itself - regardless of the quality of the source-to-relay channels. For the erasure MRC, the solution has a more complex, inductive structure: the participation of a relay r in the optimal strategy depends on the best throughput that can be achieved using only those relays with a better link to the destination than r.
Keywords :
encoding; relay networks (telecommunication); subscriber loops; wireless channels; LDPC; MARC; MRC; Tornado codes; binary erasure channel; coding; erasure location information; erasure patterns; inductive structure; link erasure rates; memoryless packet erasures; multiple access relay channel; multiple relay channel; network time-share; optimal bandwidth allocation; optimal sharing; wireless erasure relay networks; wireless network configurations; Bandwidth; Decoding; Encoding; Relays; Tornadoes; Vectors; Wireless communication; Capacity; coding; erasure; multiple-access; relay; wireless;
fLanguage :
English
Journal_Title :
Wireless Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-1276
Type :
jour
DOI :
10.1109/TWC.2012.092512111404
Filename :
6319331
Link To Document :
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