DocumentCode
20962
Title
Understanding the Scheduling Performance in Wireless Networks with Successive Interference Cancellation
Author
Shaohe Lv ; Weihua Zhuang ; Ming Xu ; Xiaodong Wang ; Chi Liu ; Xingming Zhou
Author_Institution
Nat. Lab. of Parallel & Distrib. Process., Nat. Univ. of Defense Technol., Changsha, China
Volume
12
Issue
8
fYear
2013
fDate
Aug. 2013
Firstpage
1625
Lastpage
1639
Abstract
Successive interference cancellation (SIC) is an effective way of multipacket reception to combat interference in wireless networks. We focus on link scheduling in wireless networks with SIC, and propose a layered protocol model and a layered physical model to characterize the impact of SIC. In both the interference models, we show that several existing scheduling schemes achieve the same order of approximation ratios, independent of whether or not SIC is available. Moreover, the capacity order in a network with SIC is the same as that without SIC. We then examine the impact of SIC from first principles. In both chain and cell topologies, SIC does improve the throughput with a gain between 20 and 100 percent. However, unless SIC is properly characterized, any scheduling scheme cannot effectively utilize the new transmission opportunities. The results indicate the challenge of designing an SIC-aware scheduling scheme, and suggest that the approximation ratio is insufficient to measure the scheduling performance when SIC is available.
Keywords
approximation theory; interference suppression; radio networks; SIC; approximation ratios; capacity order; layered physical model; layered protocol model; link scheduling performance; multipacket reception; successive interference cancellation; wireless networks; Approximation algorithms; Approximation methods; Interference; Protocols; Schedules; Scheduling; Silicon carbide; Network capacity; link scheduling; successive interference cancellation;
fLanguage
English
Journal_Title
Mobile Computing, IEEE Transactions on
Publisher
ieee
ISSN
1536-1233
Type
jour
DOI
10.1109/TMC.2012.140
Filename
6226413
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