Time domain synchronous orthogonal frequency division multiplexing (OFDM) is a novel OFDM transmission scheme which utilizes time-domain sequences as the guard intervals and as the training sequences to enhance the overall data efficiency. By adopting turbo equalization and data-aided channel re-estimation, the MIMO TDS-OFDMsystem is applied to underwater acoustic (UWA) communications and achieves better error performance than zero-padded OFDM with comparable sizes of guard interval and pilots. The proposed MIMO TDS-OFDM scheme achieves high performance and high data efficiency, and keeps low complexity. Its performance is demonstrated by a simulation and an underwater pool experiment
In this paper, we propose a novel underwater acoustic (UWA) communication scheme that achieves energ...
The goal of the project UCAC is to investigate digital communications in underwater acoustic channel...
Abstract — MIMO-OFDM is one viable solution for high data rate transmissions over underwater acousti...
Recent research in underwater acoustic communications has taken advantage of MIMO technologies to ac...
Time domain synchronization orthogonal frequency division multiplexing technique (TDS-OFDM) can offe...
Time domain synchronization orthogonal frequency division multiplexing technique (TDS-OFDM) can offe...
Time domain synchronization orthogonal frequency division multiplexing technique (TDS-OFDM) can offe...
This paper investigates a low-complexity frequency-domain turbo equalization (FDTE) based on linear ...
Abstract—Multiple-input–multiple-output (MIMO) techniques have been actively pursued recently in und...
Projecte fet en col.laboració amb Massachusetts Institute of TechnologyResearch e orts over the past...
Projecte fet en col.laboració amb Massachusetts Institute of TechnologyResearch e orts over the past...
This paper proposes a new iterative receiver for single-carrier multiple-input-multiple-output (SC-M...
This paper investigates a multiple-input multiple-output (MIMO) detector for underwater acoustic (UW...
In this paper, we propose a novel underwater acoustic (UWA) communication scheme that achieves energ...
Abstract — In this paper, we propose a time-domain receiver design scheme for high data rate single ...
In this paper, we propose a novel underwater acoustic (UWA) communication scheme that achieves energ...
The goal of the project UCAC is to investigate digital communications in underwater acoustic channel...
Abstract — MIMO-OFDM is one viable solution for high data rate transmissions over underwater acousti...
Recent research in underwater acoustic communications has taken advantage of MIMO technologies to ac...
Time domain synchronization orthogonal frequency division multiplexing technique (TDS-OFDM) can offe...
Time domain synchronization orthogonal frequency division multiplexing technique (TDS-OFDM) can offe...
Time domain synchronization orthogonal frequency division multiplexing technique (TDS-OFDM) can offe...
This paper investigates a low-complexity frequency-domain turbo equalization (FDTE) based on linear ...
Abstract—Multiple-input–multiple-output (MIMO) techniques have been actively pursued recently in und...
Projecte fet en col.laboració amb Massachusetts Institute of TechnologyResearch e orts over the past...
Projecte fet en col.laboració amb Massachusetts Institute of TechnologyResearch e orts over the past...
This paper proposes a new iterative receiver for single-carrier multiple-input-multiple-output (SC-M...
This paper investigates a multiple-input multiple-output (MIMO) detector for underwater acoustic (UW...
In this paper, we propose a novel underwater acoustic (UWA) communication scheme that achieves energ...
Abstract — In this paper, we propose a time-domain receiver design scheme for high data rate single ...
In this paper, we propose a novel underwater acoustic (UWA) communication scheme that achieves energ...
The goal of the project UCAC is to investigate digital communications in underwater acoustic channel...
Abstract — MIMO-OFDM is one viable solution for high data rate transmissions over underwater acousti...