DocumentCode
1062058
Title
Transmission Capacity of Wireless Ad Hoc Networks With Successive Interference Cancellation
Author
Weber, Steven P. ; Andrews, Jeffrey G. ; Yang, Xiangying ; de Veciana, Gustavo
Author_Institution
Drexel Univ., Philadelphia
Volume
53
Issue
8
fYear
2007
Firstpage
2799
Lastpage
2814
Abstract
The transmission capacity (TC) of a wireless ad hoc network is defined as the maximum spatial intensity of successful transmissions such that the outage probability does not exceed some specified threshold. This work studies the improvement in TC obtainable with successive interference cancellation (SIC), an important receiver technique that has been shown to achieve the capacity of several classes of multiuser channels, but has not been carefully evaluated in the context of ad hoc wireless networks. This paper develops closed-form upper bounds and easily computable lower bounds for the TC of ad hoc networks with SIC receivers, for both perfect and imperfect SIC. The analysis applies to any multiuser receiver that cancels the K strongest interfering signals by a factor z isin [0, 1]. In addition to providing the first closed-form capacity results for SIC in ad hoc networks, design-relevant insights are made possible. In particular, it is shown that SIC should be used with direct sequence spread spectrum. Also, any imperfections in the interference cancellation rapidly degrade its usefulness. More encouragingly, only a few - often just one - interfering nodes need to be canceled in order to get the vast majority of the available performance gain.
Keywords
Poisson equation; ad hoc networks; interference suppression; closed-form upper bounds; direct sequence spread spectrum; maximum spatial intensity; multiuser channels; successive interference cancellation; transmission capacity; wireless ad hoc networks; Capacity planning; Computer networks; Degradation; Interference cancellation; Multiuser channels; Signal analysis; Silicon carbide; Spread spectrum communication; Upper bound; Wireless networks; Ad hoc networks; successive interference cancellation; transmission capacity (TC);
fLanguage
English
Journal_Title
Information Theory, IEEE Transactions on
Publisher
ieee
ISSN
0018-9448
Type
jour
DOI
10.1109/TIT.2007.901153
Filename
4276942
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