DocumentCode :
803167
Title :
Fast Multiple Access Selection through variable power transmissions
Author :
Yim, Raymond ; Mehta, Neelesh B. ; Molisch, Andreas F.
Author_Institution :
Mitsubishi Electr. Res. Labs. (MERL), Cambridge, MA
Volume :
8
Issue :
4
fYear :
2009
fDate :
4/1/2009 12:00:00 AM
Firstpage :
1962
Lastpage :
1973
Abstract :
Many wireless applications demand a fast mechanism to detect the packet from a node with the highest priority (ldquobest noderdquo) only, while packets from nodes with lower priority are irrelevant. In this paper, we introduce an extremely fast contention-based multiple access algorithm that selects the best node and requires only local information of the priorities of the nodes. The algorithm, which we call variable power multiple access selection (VP-MAS), uses the local channel state information from the accessing nodes to the receiver, and maps the priorities onto the receive power. It is based on a key result that shows that mapping onto a set of discrete receive power levels is optimal, when the power levels are chosen to exploit packet capture that inherently occurs in a wireless physical layer. The VP-MAS algorithm adjusts the expected number of users that contend in each step and their respective transmission powers, depending on whether previous transmission attempts resulted in capture, idle channel, or collision. We also show how reliable information regarding the total received power at the receiver can be used to improve the algorithm by enhancing the feedback mechanism. The algorithm detects the packet from the best node in 1.5 to 2.1 slots, which is considerably lower than the 2.43 slot average achieved by the best algorithm known to date.
Keywords :
diversity reception; multi-access systems; multiuser channels; telecommunication congestion control; wireless channels; VP-MAS algorithm; channel state information; fast contention-based multiple access selection algorithm; feedback mechanism; multiuser diversity; packet detection; variable power transmission; wireless application; Base stations; Channel state information; Collaboration; Energy consumption; Feedback; Physical layer; Power control; Power system relaying; Power transmission; Throughput; Multiuser diversity; capture; collision; multiple access; power control; relay selection; splitting algorithms;
fLanguage :
English
Journal_Title :
Wireless Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-1276
Type :
jour
DOI :
10.1109/TWC.2009.080260
Filename :
4907462
Link To Document :
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