The underwater acoustic (UA) channel is dispersive in both time and frequency with severe frequency-dependent signal attenuation. Efficient channel estimation and tracking are crucial to coherent high-rate UA communication. In this paper, we propose a new compressed sensing (CS) based channel estimation method with block-by-block channel tracking for UA communication. Compared with conventional channel estimation algorithms, the proposed method efficiently exploits the sparsity of the UA channel, and improves the channel tracking capability of UA communication system. The proposed algorithm was tested during our UA communication experiment conducted in December 2012 in the Indian Ocean off Rottnest Island, Western Australia. At a data rate ...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
Block-by-block decision-directed channel tracking is a bandwidth efficient channel estimation method...
Due to the sparsity in the delay-Doppler domain of the underwater acoustic (UWA) channel, compressed...
In underwater acoustic (UWA) communication systems, inter-carrier interference (ICI) caused by the D...
Impulsive noise occurs frequently in underwater acoustic (UA) channels and can significantly degrade...
AbstractUnderwater acoustic communication is an important research area having significant industria...
Author Posting. © IEEE, 2009. This article is posted here by permission of IEEE for personal use, n...
Distributed compressed sensing techniques are applied to enhance sparse channel estimation performan...
© 2017 Marine Technology Society. Underwater acoustic (UA) channel is often affected by strong impul...
The severe multipath delay of the underwater acoustic channel, the Doppler shift, the severe time-va...
Accurate estimation of the Underwater acoustic (UWA) is a key part of underwater communications, esp...
IEEE Impulsive noise occurs frequently in underwater acoustic (UA) channels and can significantly de...
While it has been recognized that the multipath structure of the underwater acoustic (UWA) channel o...
Underwater acoustic channels have rich selectivity in time, frequency, space and Doppler. These chan...
Abstract-Accurate channel estimation in underwater acoustic communications is critical to achieving ...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
Block-by-block decision-directed channel tracking is a bandwidth efficient channel estimation method...
Due to the sparsity in the delay-Doppler domain of the underwater acoustic (UWA) channel, compressed...
In underwater acoustic (UWA) communication systems, inter-carrier interference (ICI) caused by the D...
Impulsive noise occurs frequently in underwater acoustic (UA) channels and can significantly degrade...
AbstractUnderwater acoustic communication is an important research area having significant industria...
Author Posting. © IEEE, 2009. This article is posted here by permission of IEEE for personal use, n...
Distributed compressed sensing techniques are applied to enhance sparse channel estimation performan...
© 2017 Marine Technology Society. Underwater acoustic (UA) channel is often affected by strong impul...
The severe multipath delay of the underwater acoustic channel, the Doppler shift, the severe time-va...
Accurate estimation of the Underwater acoustic (UWA) is a key part of underwater communications, esp...
IEEE Impulsive noise occurs frequently in underwater acoustic (UA) channels and can significantly de...
While it has been recognized that the multipath structure of the underwater acoustic (UWA) channel o...
Underwater acoustic channels have rich selectivity in time, frequency, space and Doppler. These chan...
Abstract-Accurate channel estimation in underwater acoustic communications is critical to achieving ...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
Block-by-block decision-directed channel tracking is a bandwidth efficient channel estimation method...
Due to the sparsity in the delay-Doppler domain of the underwater acoustic (UWA) channel, compressed...