Title :
Blind frequency offset estimation and intercarrier interference cancelation for FD-MC-CDMA systems in aerial vehicle communication
Author :
Ellinger, John ; Depoy, R. ; Sanderson, Jason ; Kaiyu Huang ; Zhiqiang Wu
fDate :
Oct. 29 2012-Nov. 1 2012
Abstract :
FD-MC-CDMA is an attractive candidate for next generation high speed aerial vehicle communication for its high spectrum efficiency and excellent BER performance. Similar to other multi-carrier transmission technologies, FD-MC-CDMA suffers significant performance degradation resulting from intercarrier interference (ICI) in high mobility environments. Particularly, because of the ICI is observed from all other subcarriers, the benefit of decomposing subcarriers into non-contiguous sets diminishes. In this paper, we propose a parallel processing based blind frequency offset estimation and ICI cancelation method for FD-MC-CDMA system to significantly improve the BER performance in high mobility environment. Specifically, by exploiting frequency offset quantization, the proposed scheme takes advantage of the orthogonality of the ICI matrix and offers excellent ICI cancelation and significant BER improvement. Moreover, the proposed scheme does not lower the transmission rate or reduce the network capacity. It is important to note that the proposed ICI cancelation scheme maintains the low complexity of optimum multi-user detection (MUD) receiver and achieves the ICI cancelation and excellent BER performance at linearly growing cost. Simulation results in AWGN channel and multi-path fading channel confirm the performance of the proposed scheme in the presence of frequency offset and in mobile channel.
Keywords :
AWGN channels; aircraft communication; blind equalisers; code division multiple access; fading channels; frequency estimation; intercarrier interference; interference suppression; mobility management (mobile radio); multipath channels; multiuser detection; next generation networks; space vehicles; spectral analysis; AWGN channel; BER improvement; BER performance; FD-MC-CDMA systems; ICI cancelation method; ICI cancelation scheme; ICI matrix; MUD receiver; frequency offset quantization; high mobility environment; intercarrier interference cancelation; mobile channel; mobility environments; multicarrier transmission technology; multipath fading channel; network capacity; next generation high speed aerial vehicle communication; optimum multiuser detection receiver; parallel processing based blind frequency offset estimation; performance degradation; spectrum efficiency; Bandwidth; Bit error rate; Complexity theory; Multicarrier code division multiple access; Multiuser detection; OFDM; Receivers;
Conference_Titel :
MILITARY COMMUNICATIONS CONFERENCE, 2012 - MILCOM 2012
Conference_Location :
Orlando, FL
Print_ISBN :
978-1-4673-1729-0
DOI :
10.1109/MILCOM.2012.6415840