DocumentCode :
1954587
Title :
Soft Rake and DFE based IDMA systems for underwater acoustic channels
Author :
Aliesawi, S. ; Tsimenidis, C.C. ; Sharif, B.S. ; Johnston, M.
Author_Institution :
Sch. of Electr., Electron. & Comput. Eng., Newcastle Univ., Newcastle upon Tyne, UK
fYear :
2010
fDate :
29-30 Sept. 2010
Firstpage :
1
Lastpage :
5
Abstract :
Two single-element downlink interleave division multiple access (IDMA) based receivers employing adaptive decision feedback equalization (DFE) and conventional soft Rake are proposed for multi-user underwater communications channels. The chip-level DFE is optimized using time-multiplexed training based on the mean square error criterion (MSE), which is generated by exchanging soft information with the single-user´s channel decoders. In contrast, the soft-Rake IDMA receiver utilizes iterative channel estimation with reconstructed multiple-access interference (MAI) signals and the detection is implemented using parallel interference cancellation (PIC) to remove MAI effects between users. Furthermore, in both receivers, the carrier phase recovery is jointly optimized. The receivers are investigated in short range shallow water acoustic channels using signals acquired during sea-trials in the North Sea. Results for synchronous multi-user scenarios with 2 and 4 users, at an effective rate of 439.5 bps per user for 4 kHz of system bandwidth, demonstrate that the DFE-based IDMA receiver can reduce intersymbol interference (ISI) efficiently while outperforming the standard soft Rake IDMA receiver.
Keywords :
acoustic signal detection; channel coding; channel estimation; decision feedback equalisers; interference suppression; iterative decoding; mean square error methods; multi-access systems; multiuser detection; radio receivers; radiofrequency interference; signal reconstruction; telecommunication channels; underwater acoustic communication; DFE-based IDMA system; adaptive decision feedback equalization; carrier phase recovery; chip-level DFE; intersymbol interference reduction; mean square error criterion; multiple-access interference signal detection; multiple-access interference signal reconstruction; multiuser underwater communication channel; parallel interference cancellation; short range shallow water acoustic channel; single-element downlink interleave division multiple access based receiver; single-user channel decoder; soft information exchange; soft-Rake IDMA receiver; synchronous multiuser scenarios; time-multiplexed training; underwater acoustic channel; DFE; IDMA; Multiuser Detection;
fLanguage :
English
Publisher :
iet
Conference_Titel :
Sensor Signal Processing for Defence (SSPD 2010)
Conference_Location :
London
Type :
conf
DOI :
10.1049/ic.2010.0231
Filename :
6191823
Link To Document :
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