DocumentCode :
615861
Title :
Exponential backoff in frequency-domain for random access in OFDMA femtocells
Author :
Mutairi, Abdulmohsen ; Roy, Sandip
Author_Institution :
Dept. of Electr. Eng., Univ. of Washington, Seattle, WA, USA
fYear :
2013
fDate :
7-10 April 2013
Firstpage :
464
Lastpage :
469
Abstract :
OFDMA femtocells are considered a key enabler in 3GPP LTE-Advanced networks of very high data rates for indoor users. However, the unmanaged nature of femtocells implies the need for careful modeling (and ultimately, managing) of inter-cell interference especially in dense deployments. So far, co-channel interference in femtocells has been investigated using traditional, cellular resource allocation approaches that usually assume a fully loaded network where the system is insensitive to the activity of a single user. This assumption is not suitable for femtocells which are designed to serve very few users and thus lacks the presumed traffic aggregation. In this paper, we exploit the bandwidth flexibility inherent to OFDMA to design more effective (distributed) random access MAC protocol for femtocells. The proposed Exponential Backoff in Frequency (EBF) algorithm allows femtocells to transmit packets in bulk and resolves collisions in the frequency-domain using a synchronized binary tree branching process over the channels that reduces the accessed bandwidth after every failed attempt. Analysis of the mean packet delay and simulation results show that EBF enjoys considerably less packet delay compared to the basic K-Aloha MAC in which femtocells transmit over a random K-subset of channels.
Keywords :
3G mobile communication; Long Term Evolution; OFDM modulation; access protocols; cochannel interference; femtocellular radio; frequency division multiple access; frequency-domain analysis; indoor radio; resource allocation; telecommunication traffic; 3GPP LTE-advanced networks; EBF algorithm; K-Aloha MAC; OFDMA femtocells; bandwidth flexibility; cellular resource allocation approaches; cochannel interference; dense deployments; exponential backoff in frequency algorithm; femtocell transmission; frequency domain; fully loaded network; indoor users; intercell interference; mean packet delay; random K-subset; random access; random access MAC protocol; single user activity; synchronized binary tree branching process; traffic aggregation; Algorithm design and analysis; Delays; Femtocells; Interference; Media Access Protocol; Simulation; Synchronization;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Wireless Communications and Networking Conference (WCNC), 2013 IEEE
Conference_Location :
Shanghai
ISSN :
1525-3511
Print_ISBN :
978-1-4673-5938-2
Electronic_ISBN :
1525-3511
Type :
conf
DOI :
10.1109/WCNC.2013.6554608
Filename :
6554608
Link To Document :
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