DocumentCode
2632699
Title
Multiuser channel estimation for SC-FDMA system with CAZAC sounding reference sequence and Instruments-in-MATLAB verification
Author
Hwang, Jeng-Kuang ; Tsai, Yu-Tai ; Li, Jeng-Da
Author_Institution
Dept. of Commun. Eng., Yuan Ze Univ., Chungli, Taiwan
fYear
2012
fDate
4-6 June 2012
Firstpage
1
Lastpage
5
Abstract
For the 4G Single-Carrier Frequency-Division-Multiple-Access (SC-FDMA) uplink system, the CAZAC (constant amplitude zero autocorrelation) property of Zadoff-Chu sounding reference sequence (SRS) is exploited to accomplish multiuser (MU) channel estimation in this paper. First, letting each user use an appropriate circular shift of the base SRS, the MU-SC-FDMA signal model is given. Then we derive an efficient MU channel estimation (MUCE) algorithm, which needs only a pair of FFT/IFFT operation to obtain all the users´ channel impulse responses. Moreover, the computer simulation results show that only a small degradation in bit error performance is incurred by MUCE. Finally, we set up a Instruments-in-MATLAB Software-Defined Radio (IM-SDR) platform to verify the feasibility of the MUCE algorithm. Real-world measurement results of a two-user experiment show that the MUCE can simultaneously and accurately estimate the two-user channel responses specified by the RF channel emulator.
Keywords
4G mobile communication; channel estimation; fast Fourier transforms; frequency division multiple access; software radio; telecommunication channels; transient response; 4G single-carrier frequency-division-multiple-access; CAZAC sounding reference sequence; FFT/IFFT operation; IM-SDR; MUCE algorithm; RF channel emulator; SC-FDMA uplink system; SRS; Zadoff-2012 Chu sounding reference sequence; channel impulse responses; constant amplitude zero autocorrelation; error performance; instruments-in-MATLAB software-defined radio; instruments-in-MATLAB verification; multiuser channel estimation; two-user channel responses; Channel estimation; Correlation; Estimation; Frequency domain analysis; Instruments; Multiuser channels; OFDM; CAZAC Sequence; Multiuser Channel Estimator; SC-FDMA; Software Defined Radio; TD-LTE;
fLanguage
English
Publisher
ieee
Conference_Titel
Consumer Electronics (ISCE), 2012 IEEE 16th International Symposium on
Conference_Location
Harrisburg, PA
ISSN
0747-668X
Print_ISBN
978-1-4673-1354-4
Type
conf
DOI
10.1109/ISCE.2012.6241750
Filename
6241750
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