DocumentCode :
1691341
Title :
Multicarrier-CDMA STAR with time and frequency synchronization
Author :
Smida, Besma ; Affes, Sofiène ; Li, Jun ; Mermelstein, Paul
Author_Institution :
INRS-EMT, Quebec Univ., Montreal, Que., Canada
Volume :
4
fYear :
2005
Firstpage :
2493
Abstract :
This paper proposes a spectrum-efficient spatio-temporal array-receiver (STAR) for multi-carrier CDMA systems named MC-STAR. First, we derive a new post-correlation model for MC-CDMA that supports both the MT-CDMA and MC-DS-CDMA air-interfaces. Based on this model, we introduce a new multi-carrier receiver with rapid and accurate joint synchronization in time and frequency. We also exploit the intrinsic subcarrier correlation to improve the channel identification and the synchronization operations. We analyze the performance of MC-STAR in an unknown time-varying Rayleigh channel with multipath, carrier offset and cross-correlation between subcarrier channels. Simulation results confirm the accuracy of the joint time/frequency synchronization. They also confirm that for each MC-STAR configuration there exists an optimum number of subcarriers which results in maximum throughput. A higher number of subcarriers increases the inter-carrier interference while a lower number of subcarriers reduces the frequency gain. With four receiving antennas and five MT-CDMA subcarriers in 5 MHz bandwidth, MC-STAR provides about 1.2 bps/Hz at low mobility for DBPSK, i.e., an increase of 30% in spectrum efficiency over DS-CDMA.
Keywords :
Rayleigh channels; antenna arrays; code division multiple access; mobile radio; multipath channels; radiofrequency interference; receiving antennas; spread spectrum communication; synchronisation; time-varying channels; 5 MHz; channel identification; frequency synchronization; intercarrier interference; multicarrier receiver; multicarrier-CDMA systems; spectrum-efficient spatio-temporal array-receiver; time synchronization; time-varying Rayleigh channel; Bandwidth; Frequency estimation; Frequency synchronization; Interference; Multiaccess communication; Multicarrier code division multiple access; Parameter estimation; Performance analysis; Phase change materials; Spatiotemporal phenomena;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Communications, 2005. ICC 2005. 2005 IEEE International Conference on
Print_ISBN :
0-7803-8938-7
Type :
conf
DOI :
10.1109/ICC.2005.1494788
Filename :
1494788
Link To Document :
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