DocumentCode
1738650
Title
Equalization and multiuser detection for space time block coding based transmit diversity (STD) in frequency selective channels
Author
Dabak, Anand G. ; Schmidl, Tim ; Sengupta, Chaitali
Author_Institution
DSPS R&D Center, Texas Instrum. Inc., Dallas, TX, USA
Volume
2
fYear
2000
fDate
2000
Firstpage
506
Abstract
The 3Gpp WCDMA TDD (time division duplex) system employs a small spreading factor (less than 15). This implies that the multipath components cause intersymbol interference (ISI) and multiuser interference at the receiver. Hence, equalization and multiuser detection has to be done at the receiver to combat the interference. Previous work on multiuser interference cancellation for space time block codes only considered single path channels. Similarly, previous work on equalization for space time codes, only addresses space time trellis codes and not space time block codes. The problem of equalization and multiuser detection of space time block codes in multipath fading channels has not been addressed before. We derive the receiver structure for the above. We apply this receiver to space time block coding based transmit diversity (STTD) applied to 3Gpp WCDMA TDD system. In particular we derive the zero forcing (ZF-STTD) and the minimum mean squared error (MMSE-STTD) equalizer/multiuser detector for STTD encoded 3Gpp WCDMA TDD system. We show that for dual antenna transmission using STTD encoding, a ZF-STTD decoding receiver at the mobile gives between 1.0-3.0 dB gain over single antenna transmission, depending upon the multipath channel model. Thus STTD encoding gives significant diversity gains over single antenna transmission for the WCDMA TDD systems
Keywords
block codes; broadband networks; code division multiple access; decoding; diversity reception; equalisers; fading channels; interference suppression; intersymbol interference; land mobile radio; least mean squares methods; multipath channels; multiuser channels; radio receivers; radio transmitters; signal detection; 3Gpp WCDMA TDD system; ISI; MMSE-STTD equalizer/multiuser detector; STTD encoding; ZF-STTD decoding receiver; diversity gains; dual antenna transmission; equalization; frequency selective channels; intersymbol interference; minimum mean squared error; mobile radio; multipath channel model; multipath components; multipath fading channels; multiuser detection; multiuser interference cancellation; receiver structure; space time block codes; space time block coding; spreading factor; time division duplexing; transmit diversity; zero forcing equalizer/multiuser detector; Block codes; Convolutional codes; Interference cancellation; Intersymbol interference; Mobile antennas; Multiaccess communication; Multiuser detection; Receiving antennas; Space time codes; Transmitting antennas;
fLanguage
English
Publisher
ieee
Conference_Titel
Vehicular Technology Conference, 2000. IEEE-VTS Fall VTC 2000. 52nd
Conference_Location
Boston, MA
ISSN
1090-3038
Print_ISBN
0-7803-6507-0
Type
conf
DOI
10.1109/VETECF.2000.887068
Filename
887068
Link To Document