Title :
Time Reversal Receivers for High Data Rate Acoustic Multiple-Input–Multiple-Output Communication
Author :
Song, Aijun ; Badiey, Mohsen ; McDonald, Vincent Keyko ; Yang, T.C.
Author_Institution :
Coll. of Earth, Ocean, & Environ., Univ. of Delaware, Newark, DE, USA
Abstract :
A low-complexity receiver is proposed for high-frequency underwater acoustic multiple-input-multiple-output (MIMO) channels. The receiver uses time reversal combining followed by a single-channel decision feedback equalizer (DFE) to deal with the intersymbol interference. Periodical MIMO channel estimation is employed to track fast channel fluctuations. Both serial and parallel interference cancellation techniques are integrated with time reversal DFE to address the cochannel interference (CoI) in underwater MIMO systems. Two channel estimation algorithms are also implemented. It was demonstrated through the experiment conducted at Kauai, HI in 2005 that the proposed receiver can deal with the fast-fluctuating, dispersive MIMO channel at the carrier frequency of 37.5 kHz. Parallel interference cancellation combined with matching pursuit channel estimation was shown to provide significant performance improvements, indicating the receiver algorithm can effectively suppress the CoI. Four streams of binary phase-shift keying (BPSK) sequences at an aggregate rate of 16 kb/s and quadrature phase-shift keying (QPSK) sequences at a rate of 32 kb/s were demodulated at low bit error rates. These data rates corresponded to bandwidth efficiencies of 2.29 b/s/Hz or 4.57 b/s/Hz in a dynamic underwater environment, where the source and the receiver were drifting at a 2-km range.
Keywords :
MIMO communication; channel estimation; cochannel interference; decision feedback equalisers; interference suppression; intersymbol interference; quadrature phase shift keying; radio receivers; underwater acoustic communication; QPSK; binary phase-shift keying sequences; bit rate 16 kbit/s; bit rate 32 kbit/s; cochannel interference; distance 2 km; fast channel fluctuations; frequency 37.5 kHz; high data rate acoustic multiple-input-multiple-output communication; intersymbol interference; parallel interference cancellation techniques; periodical channel estimation; quadrature phase-shift keying sequences; serial interference cancellation techniques; single-channel decision feedback equalizer; time reversal receivers; underwater MIMO systems; underwater acoustic MIMO channels; Channel estimation; Decision feedback equalizers; Interchannel interference; MIMO; Underwater acoustics; Underwater communication; Cochannel interference (CoI); decision feedback equalizer (DFE); multiple-input–multiple-output (MIMO) system; time reversal processing; underwater acoustic communication;
Journal_Title :
Oceanic Engineering, IEEE Journal of
DOI :
10.1109/JOE.2011.2166660