DocumentCode
1913492
Title
Angle-of-arrival-based detection of underwater acoustic OFDM signals
Author
Amar, Alon ; Buchris, Yaakov ; Stojanovic, Milica
Author_Institution
Signal Process. Dept., Acoust. Res. Center, Haifa, Israel
fYear
2015
fDate
June 28 2015-July 1 2015
Firstpage
326
Lastpage
330
Abstract
We propose a spatial combining technique for detection of multicarrier underwater acoustic communication signals using a vertical array of receivers. Instead of estimating the channel for each receiver independently and ignoring the angles of arrival of each of the channel paths, the suggested technique is based on spatially filtering each of the channel paths by steering a multi-frequency beamformer to their angles of arrival. As the number of channel paths is usually smaller than the number of the receivers, this process reduces the dimensionality of the model and involves a lower computational load. The signals at the output of the beamformer are then decoded in a coherent or differentially-coherent form. Simulation results show that angle-of-arrival-based detection outperforms the traditional angle-of-arrival-ignorant spatial combining methods for low signal to noise ratio and moderate range.
Keywords
OFDM modulation; acoustic receivers; array signal processing; beam steering; channel estimation; direction-of-arrival estimation; diversity reception; signal detection; spatial filters; underwater acoustic communication; wireless channels; angle-of-arrival detection; channel estimation; channel spatial filtering; low signal to noise ratio; lower computational load; multicarrier underwater acoustic communication OFDM signal detection; multifrequency beamformer steering; receiver vertical array; spatial combining technique; OFDM; Signal to noise ratio; Multicarrier underwater acoustic communication; angle of arrival; multipath diversity; spatial combining;
fLanguage
English
Publisher
ieee
Conference_Titel
Signal Processing Advances in Wireless Communications (SPAWC), 2015 IEEE 16th International Workshop on
Conference_Location
Stockholm
Type
conf
DOI
10.1109/SPAWC.2015.7227053
Filename
7227053
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