This article studies the underwater acoustic (UWA) communications associated with multiple input–multiple output (MIMO), single carrier with frequency-domain equalization (SC-FDE), and with low-density parity-check (LDPC) codes. Low-complexity receivers such as equal gain combining (EGC), maximum ratio combining (MRC), and iterative block—decision feedback equalization (IB-DFE) are studied in the above-described scenarios. Furthermore, due to the low carrier frequencies utilized in UWA communications, the performance of the proposed MIMO scenarios is studied at different levels of channel correlation between antennas. This article shows that the combined schemes tend to achieve good performances while presenting low complexity, even in scen...
Underwater acoustic (UWA) communication is getting increased attention in a wide range of applicatio...
Multiple-input–multiple-output (MIMO) communication systems utilize multiple transmitters to send di...
The coded communications using non-coherent orthogonal modulation and capacity-approaching binary ch...
UIDB/EEA/50008/2020This article studies the underwater acoustic (UWA) communications associated with...
This paper investigates a low-complexity frequency-domain turbo equalization (FDTE) based on linear ...
Recent research in underwater acoustic communications has taken advantage of MIMO technologies to ac...
Abstract—Multiple-input–multiple-output (MIMO) techniques have been actively pursued recently in und...
Due to the intense importance of underwater applications in military and commercial purposes, Underw...
Underwater Acoustic Communications (UWAC) using Multiple Input and Multiple Output (MIMO) system is ...
Multiple-input multiple-output (MIMO) underwater acoustic (UWA) channels introduce both space-time ...
In this paper, we propose a low complexity iterative detection scheme for the uncoded zero padding (...
In this paper, we propose a low-complexity single-carrier frequency-domain iterative receiver for tr...
Abstract — In this paper, we propose a time-domain receiver design scheme for high data rate single ...
Hermes is a Single-Input Single-Output (SISO) underwater acoustic modem that achieves very high-bit ...
This paper investigates a multiple-input multiple-output (MIMO) detector for underwater acoustic (UW...
Underwater acoustic (UWA) communication is getting increased attention in a wide range of applicatio...
Multiple-input–multiple-output (MIMO) communication systems utilize multiple transmitters to send di...
The coded communications using non-coherent orthogonal modulation and capacity-approaching binary ch...
UIDB/EEA/50008/2020This article studies the underwater acoustic (UWA) communications associated with...
This paper investigates a low-complexity frequency-domain turbo equalization (FDTE) based on linear ...
Recent research in underwater acoustic communications has taken advantage of MIMO technologies to ac...
Abstract—Multiple-input–multiple-output (MIMO) techniques have been actively pursued recently in und...
Due to the intense importance of underwater applications in military and commercial purposes, Underw...
Underwater Acoustic Communications (UWAC) using Multiple Input and Multiple Output (MIMO) system is ...
Multiple-input multiple-output (MIMO) underwater acoustic (UWA) channels introduce both space-time ...
In this paper, we propose a low complexity iterative detection scheme for the uncoded zero padding (...
In this paper, we propose a low-complexity single-carrier frequency-domain iterative receiver for tr...
Abstract — In this paper, we propose a time-domain receiver design scheme for high data rate single ...
Hermes is a Single-Input Single-Output (SISO) underwater acoustic modem that achieves very high-bit ...
This paper investigates a multiple-input multiple-output (MIMO) detector for underwater acoustic (UW...
Underwater acoustic (UWA) communication is getting increased attention in a wide range of applicatio...
Multiple-input–multiple-output (MIMO) communication systems utilize multiple transmitters to send di...
The coded communications using non-coherent orthogonal modulation and capacity-approaching binary ch...