Visible light communication (VLC) systems have typically operated at data rates below 10 Gbps and operation at this data rate was shown to be feasible by using laser diodes (LDs), imaging receivers and delay adaptation techniques (DAT imaging LDs-VLC). However, higher data rates, beyond 10 Gbps, are challenging due to the low signal to noise ratio (SNR) and inter symbol interference (ISI). In this paper, for the first time, to the best of our knowledge, we propose, design and evaluate a VLC system that employs beam steering (of part of the VLC beam) using adaptive finite vocabulary of holograms in conjunction with an imaging receiver and a delay adaptation technique to enhance SNR and to mitigate the impact of ISI at high data rates (20 Gbp...
Providing high data rates is one of the big concerns in visible light communication (VLC) systems. T...
Visible Light Communications (VLC) can provide both illumination and communications and offers a mea...
In this paper, we propose, design, and evaluate two indoor visible light communication (VLC) systems...
Beam steering visible light communication (VLC) systems have been shown to offer performance enhance...
Visible light communication (VLC) systems have typically operated at data rates below 20 Gbps and op...
Visible light communication (VLC) systems have become promising candidates to complement conventiona...
The two main challenges facing high data rate visible light communication (VLC) are the low modulati...
The need for high-speed local area networks to meet the recent developments in multimedia and video ...
Visible light communication (VLC) systems have become promising candidates to complement conventiona...
The achievable data rate in indoor wireless systems that employ visible light communication (VLC) ca...
Adaptive beam steering in optical wireless communication (OWC) system has been shown to offer perfor...
The future of visible light communication (VLC) systems relies on achieving moderate to high data ra...
In this paper, we introduce a new adaptive optical wireless system that employs a finite vocabulary ...
Providing high data rates is one of the drivers in visible light communication (VLC) systems. This p...
In this paper, we introduce an adaptive optical wireless system that employs a finite vocabulary of ...
Providing high data rates is one of the big concerns in visible light communication (VLC) systems. T...
Visible Light Communications (VLC) can provide both illumination and communications and offers a mea...
In this paper, we propose, design, and evaluate two indoor visible light communication (VLC) systems...
Beam steering visible light communication (VLC) systems have been shown to offer performance enhance...
Visible light communication (VLC) systems have typically operated at data rates below 20 Gbps and op...
Visible light communication (VLC) systems have become promising candidates to complement conventiona...
The two main challenges facing high data rate visible light communication (VLC) are the low modulati...
The need for high-speed local area networks to meet the recent developments in multimedia and video ...
Visible light communication (VLC) systems have become promising candidates to complement conventiona...
The achievable data rate in indoor wireless systems that employ visible light communication (VLC) ca...
Adaptive beam steering in optical wireless communication (OWC) system has been shown to offer perfor...
The future of visible light communication (VLC) systems relies on achieving moderate to high data ra...
In this paper, we introduce a new adaptive optical wireless system that employs a finite vocabulary ...
Providing high data rates is one of the drivers in visible light communication (VLC) systems. This p...
In this paper, we introduce an adaptive optical wireless system that employs a finite vocabulary of ...
Providing high data rates is one of the big concerns in visible light communication (VLC) systems. T...
Visible Light Communications (VLC) can provide both illumination and communications and offers a mea...
In this paper, we propose, design, and evaluate two indoor visible light communication (VLC) systems...