We propose an imaging receiver (ImR) using angle diversity detectors for indoor space division multiplexing-based visible light communication (SDM-VLC) systems. Compared with a conventional ImR which utilizes vertically oriented detectors, the proposed imaging angle diversity receiver (ImADR) enjoys two main advantages, including a wider field-of-view (FOV) and higher optical gain. Both theoretical analysis and Monte Carlo simulations are carried out to evaluate the performance of the proposed ImADR in an indoor four-channel SDM-VLC system. Analytical results show that, for a target bit error rate of 10^{math\rm { {-3}}} , the proposed ImADR-based SDM-VLC system achieves 44% reduction in the transmit optical power and 130% coverage improve...
Visible light communication (VLC) using multiple-input multiple-output (MIMO) has great potential fo...
This paper presents the high-diversity space division multiplexing (SDM) visible light communication...
Aselsan;et al.;Huawei;IEEE Signal Processing Society;IEEE Turkey Section;Netas26th IEEE Signal Proce...
We propose an imaging receiver (ImR) using angle diversity detectors for indoor space division multi...
We present and evaluate a multiple-input multiple-output visible light communications (MIMO-VLC) sys...
International audienceIn indoor visible light communication systems, transmitters are usually within...
International audienceThis paper proposes two novel and practical designs of angle diversity receive...
*Çelik, Yasin ( Aksaray, Yazar )In an indoor MIMO visible light communication (VLC) system, LoS link...
Due to severe inter-cell interference (ICI), the signal-to- interference-and-noise ratio (SINR) suff...
Achieving high data rate is one of the primary goals of visible light communication (VLC) systems. T...
In multiple-input multiple-output (MIMO) indoor visible light communication (VLC) systems, the eleme...
In this paper, we numerically and experimentally demonstrate an inter-cell interference (ICI) mitiga...
This letter proposes an imaging receiver scheme for an indoor multiple-input-multiple-output (MIMO) ...
© 2016 IEEE. Aperture-based receivers are a new form of receiver for multiple-input multiple-output ...
The verification experiment of the high-spatial-diversity fisheye-lens-based SDM VLC system is demon...
Visible light communication (VLC) using multiple-input multiple-output (MIMO) has great potential fo...
This paper presents the high-diversity space division multiplexing (SDM) visible light communication...
Aselsan;et al.;Huawei;IEEE Signal Processing Society;IEEE Turkey Section;Netas26th IEEE Signal Proce...
We propose an imaging receiver (ImR) using angle diversity detectors for indoor space division multi...
We present and evaluate a multiple-input multiple-output visible light communications (MIMO-VLC) sys...
International audienceIn indoor visible light communication systems, transmitters are usually within...
International audienceThis paper proposes two novel and practical designs of angle diversity receive...
*Çelik, Yasin ( Aksaray, Yazar )In an indoor MIMO visible light communication (VLC) system, LoS link...
Due to severe inter-cell interference (ICI), the signal-to- interference-and-noise ratio (SINR) suff...
Achieving high data rate is one of the primary goals of visible light communication (VLC) systems. T...
In multiple-input multiple-output (MIMO) indoor visible light communication (VLC) systems, the eleme...
In this paper, we numerically and experimentally demonstrate an inter-cell interference (ICI) mitiga...
This letter proposes an imaging receiver scheme for an indoor multiple-input-multiple-output (MIMO) ...
© 2016 IEEE. Aperture-based receivers are a new form of receiver for multiple-input multiple-output ...
The verification experiment of the high-spatial-diversity fisheye-lens-based SDM VLC system is demon...
Visible light communication (VLC) using multiple-input multiple-output (MIMO) has great potential fo...
This paper presents the high-diversity space division multiplexing (SDM) visible light communication...
Aselsan;et al.;Huawei;IEEE Signal Processing Society;IEEE Turkey Section;Netas26th IEEE Signal Proce...