DocumentCode
2093703
Title
Scaling laws for hybrid wireless networks over fading channels: Outage throughput capacity and performance analysis
Author
Xin Wang ; Qilian Liang
Author_Institution
Dept. of Electr. Eng., Univ. of Texas at Arlington, Arlington, TX, USA
fYear
2013
fDate
9-13 June 2013
Firstpage
5573
Lastpage
5577
Abstract
In this paper, we focus on the hybrid wireless network, in which a wired network of base stations is deployed to support long-range communications between wireless nodes. Two types of transmission mode in hybrid wireless network, the so called intra-cell transmission mode and the infrastructure transmission mode are considered. Then what is the throughput capacity of hybrid wireless network over fading channels and how the throughput capacity varies with different network setup? To study these open questions, we first define a feasible outage throughput capacity as the criterion for throughput performance analysis. Aiming to effectively overcome the fading impairments, we introduce an optimal multiple access technique allowing opportunistic sources to transmit concurrently with the scheduled source. A successive interference cancelation (SIC) strategy is then applied at the receiver to limit the intra-cell interference and achieve the maximum throughput. We derive closed-form analytical expressions for the outage throughput capacity and further explore the scaling laws for the outage throughput capacity under different transmission modes. Finally, we provide the detailed performance analysis in terms of the per-node average error probability (AEP). The theoretical bounds obtained are instrumental to the future network modeling and design.
Keywords
error statistics; fading channels; interference suppression; radio receivers; AEP; SIC; fading channels; hybrid wireless networks; infrastructure transmission mode; intra-cell interference; intra-cell transmission mode; long-range communications; optimal multiple access; outage throughput capacity; per-node average error probability; performance analysis; receiver; scaling laws; successive interference cancelation; wireless nodes; Base stations; Downlink; Fading; Interference; Throughput; Uplink; Wireless networks;
fLanguage
English
Publisher
ieee
Conference_Titel
Communications (ICC), 2013 IEEE International Conference on
Conference_Location
Budapest
ISSN
1550-3607
Type
conf
DOI
10.1109/ICC.2013.6655480
Filename
6655480
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