DocumentCode :
1756498
Title :
Cooperative Quantization for Two-UserInterference Channels
Author :
Xiaoyi Liu ; Koyuncu, Erdem ; Jafarkhani, Hamid
Author_Institution :
Center for Pervasive Commun. & Comput., Univ. of California at Irvine, Irvine, CA, USA
Volume :
63
Issue :
7
fYear :
2015
fDate :
42186
Firstpage :
2698
Lastpage :
2712
Abstract :
We introduce cooperative quantizers for two-user interference channels where interference signals are treated as noise. Compared with the conventional quantizers where each receiver quantizes its own channel independently, the proposed cooperative quantizers allow multiple rounds of feedback communication in the form of conferencing between receivers. For both time-sharing and concurrent transmission strategies, we propose different cooperative quantizers to achieve the full-channel-state-information (full-CSI) network outage probability of sum rate and the full-CSI network outage probability of minimum rate, respectively. Our proposed quantizers only require finite average feedback rates, whereas the conventional quantizers require infinite rate to achieve the full-CSI performance. For the minimum rate, we also design cooperative quantizers for a joint time-sharing and concurrent transmission strategy that can approach the previously established optimal network outage probability with a negligible gap. Numerical simulations confirm that our cooperative quantizers based on conferencing outperform the conventional quantizers.
Keywords :
cooperative communication; interference (signal); probability; quantisation (signal); telecommunication network reliability; concurrent transmission strategies; conferencing; cooperative quantizers; feedback communication; finite average feedback rates; full-CSI network outage probability; full-channel-state-information network outage probability; interference signals; optimal network outage probability; time-sharing transmission strategies; two-user interference channels; Decoding; Interference channels; Optimized production technology; Quantization (signal); Receivers; Transmitters; Cooperative quantizer; concurrent transmission; conferencing; network outage probability; time sharing; time-sharing;
fLanguage :
English
Journal_Title :
Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
0090-6778
Type :
jour
DOI :
10.1109/TCOMM.2015.2442234
Filename :
7118671
Link To Document :
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