DocumentCode :
1856547
Title :
MMSE beamformer based on partial FFT demodulation for OFDM underwater acoustic communications
Author :
Piñero, Gema ; Singer, Andrew C.
Author_Institution :
Inst. of Telecommun. & Multimedia Applic., Univ. Politec. de Valencia, Valencia, Spain
fYear :
2012
fDate :
27-31 Aug. 2012
Firstpage :
2308
Lastpage :
2312
Abstract :
Underwater Acoustic (UWA) communications have to deal with channels that exhibit widely time-spreading multipath responses, together with Doppler spreading and limited bandwidth. These features seriously limit data throughput, even for sophisticated modulation schemes. Focusing on the large time-spreading characteristics, we analyze in this paper an OFDM UWA system such that the channel is longer than the Cyclic Prefix (CP) used. Under this condition, and considering an array of hydrophones at the receiver, we propose in this paper a Minimum Mean Square Error (MMSE) beamformer that makes use of two partial FFTs of half the original number of subcarriers to demodulate the OFDM signal. We show that one of the two demodulated signal can be received without Inter-Symbol Interference (ISI), even for longer-than-CP channels, and that the MMSE beamformer automatically is steered to direct and reflected paths obtaining an improvement of 4 dB in the Signal-to-Noise Ratio (SNR) and a reduction of 2 to 3 times the Bit Error Rate (BER) with respect to a conventional Delay-and-Sum (DS) beamformer.
Keywords :
OFDM modulation; array signal processing; demodulation; error statistics; fast Fourier transforms; least mean squares methods; underwater acoustic communication; DS beamformer; Doppler spreading; MMSE beamformer; OFDM UWA system; OFDM signal demodulation; OFDM underwater acoustic communications; UWA communications; bit error rate; cyclic prefix; delay-and-sum beamformer; hydrophones; minimum mean square error beamformer; partial FFT demodulation; signal-to-noise ratio; time-spreading characteristics; time-spreading multipath responses; Bit error rate; Discrete Fourier transforms; OFDM; Signal to noise ratio; Sonar equipment; Underwater acoustics; Vectors; OFDM; Underwater Acoustic Communications; broadband acoustic beamformer;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Signal Processing Conference (EUSIPCO), 2012 Proceedings of the 20th European
Conference_Location :
Bucharest
ISSN :
2219-5491
Print_ISBN :
978-1-4673-1068-0
Type :
conf
Filename :
6334255
Link To Document :
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