DocumentCode :
2216658
Title :
Joint VBLAST/STBC assisted MIMO MC-IDMA system in frequency selective channels: Performance results
Author :
Vishvaksenan, K.S. ; Seshasayanan, R. ; Krishnamoorthy, Yuvaraj
Author_Institution :
Dept. of ECE, Anna Univ., Chennai, India
fYear :
2012
fDate :
4-5 April 2012
Firstpage :
12
Lastpage :
16
Abstract :
In this paper, we evaluate the performance of multi carrier interleave division multiple access (MC-IDMA) system supported by joint transmit scheme employing Vertical Bell Laboratories Layered space-time architecture (VBLAST) and Space-Time Block Code (STBC) over correlated frequency selective channels. Spatial multiplexing and spatial diversity can be achieved by combing VBLAST and STBC processing. In IDMA, user specific interleaving pattern is used to distinguish different users as against signature sequence in the conventional code division multiple access (CDMA) system. In MC-IDMA system, the multi carrier is realized by orthogonal frequency division multiplexing (OFDM), which can eliminate the effects of time dispersion. At the mobile station (MS), non-linear multi-user detection (MUD) based on zero forcing (ZF) rule is employed to mitigate the effects of multiple access interference (MAI) and multi stream interference (MSI) in the context of downlink multi input multi output (MIMO) MC-IDMA system. In particular, we investigate the effects of three types of delay-spread distributions pertaining to Stanford university interim (SUI) channel models in MIMO MC-IDMA system. We also compare the performance of the considered system with double space-time transmit diversity (DSTTD) aided MC-IDMA system. It is demonstrated through computer simulations that coded MC-IDMA system with joint VBLAST/STBC processing is capable of achieving better bit error rate (BER) as compared to DSTTD system.
Keywords :
MIMO communication; OFDM modulation; code division multiple access; diversity reception; error statistics; interference suppression; multiuser detection; space division multiplexing; space-time block codes; BER; DSTTD aided MC-IDMA system; MAI; MSI; MUD-ZF rule; OFDM; SUI channel models; Stanford university interim channel models; bit error rate; code division multiple access; computer simulations; correlated frequency selective channels; double space-time transmit diversity; downlink multiinput multioutput system; joint VBLAST-STBC assisted MIMO MC-IDMA system; mobile station; multicarrier interleave division multiple access system; multiple access interference mitigation; multistream interference; nonlinear multiuser detection; orthogonal frequency division multiplexing; signature sequence; space-time block code; spatial diversity; spatial multiplexing; time dispersion effect; user specific interleaving pattern; vertical Bell laboratories layered space-time architecture; zero forcing rule; Antenna theory; Decoding; Europe; Joints; Laboratories; MIMO; Receiving antennas; Double space-time transmit diversity (DSTTD); LTE channel model; multi Stream interference (MSI) SUI channel model; multi-user detection (MUD); multiple access interference (MAI); multiple input multiple output (MIMO);
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Communications and Signal Processing (ICCSP), 2012 International Conference on
Conference_Location :
Chennai
Print_ISBN :
978-1-4673-1621-7
Type :
conf
DOI :
10.1109/ICCSP.2012.6208412
Filename :
6208412
Link To Document :
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