Title :
Achieving wireline random access throughput in wireless networking via user cooperation
Author :
Ribeiro, Alejandru ; Sidiropoulos, N.D. ; Giannakis, G.B.
Author_Institution :
Dept. of ECE, Minnesota Univ., Minneapolis, MN, USA
Abstract :
Well appreciated at the physical layer, user cooperation is introduced here as a diversity enabler for wireless random access (RA) at the medium access control sub-layer. This is accomplished through a two-phase protocol in which active users start with a low power transmission attempting to reach nearby users, and follow up with a high power transmission in cooperation with the users recruited in the first phase. We show that such a cooperative protocol yields a significant increase in throughput. Specifically, we prove that for networks with a large number of users, the throughput of a cooperative wireless RA network operating over Rayleigh fading links approaches the throughput of a RA network operating over additive write Gaussian noise (AWGN) links. As a result, user cooperation migrates diversity benefits to the wireless RA regime, thus bridging the gap to wireline RA networks, without incurring a bandwidth or energy penalty.
Keywords :
AWGN channels; Rayleigh channels; access protocols; diversity reception; radio access networks; radio links; random processes; spread spectrum communication; AWGN; Rayleigh fading link; additive write Gaussian noise; diversity enabler; medium access control sublayer; physical layer; power transmission; two-phase protocol; user cooperation; wireless random access; wireline RA network; AWGN; Access protocols; Additive noise; Gaussian noise; Media Access Protocol; Physical layer; Power transmission; Rayleigh channels; Recruitment; Throughput;
Conference_Titel :
Signal Processing Advances in Wireless Communications, 2005 IEEE 6th Workshop on
Print_ISBN :
0-7803-8867-4
DOI :
10.1109/SPAWC.2005.1506296