Characterization of Line-of-Sight Link Availability in Indoor Visible Light Communication Networks Based on the Behavior of Human Users

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Date

2020

Authors

Volkan Rodoplu
Kemal Hocaoglu
Anil Adar
Rifat Orhan Cikmazel
Alper Saylam

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Volume Title

Publisher

Institute of Electrical and Electronics Engineers Inc.

Open Access Color

GOLD

Green Open Access

Yes

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0

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2

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No
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Abstract

We characterize the line-of-sight (LOS) link availability in indoor visible light communication (VLC) networks based on the behavior of human users. The VLC link availability is impacted by humans in three distinct ways: (1) Users turn the lights on or off in each room. (2) Users may carry mobile devices. (3) Users constitute mobile obstacles that block or shadow the channel between the transmitter and the receiver. First we develop a mathematical framework for VLC link availability and a probabilistic model of the VLC network with respect to human behavior in indoor environments. Second we design a realistic multi-user indoor VLC system simulation with static and mobile VLC devices that are expected to be found in smart home environments. We present the following four sets of results: (1) We report statistics on the blockage durations of VLC links and categorize the links with respect to these statistics. (2) We demonstrate the performance of Selection Diversity versus Maximal Ratio Combining for mobile VLC devices carried by humans in a smart home setting. (3) We show that optimal LED resource allocation policies for multiple users are impacted by the VLC link blockage events caused by humans. (4) We demonstrate that the link blockage events in different rooms become dependent due to humans who transition between rooms. Based on our results we provide new directions for the design of network architectures for indoor VLC systems. © 2020 Elsevier B.V. All rights reserved.

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Keywords

Mobility, Network Simulation, Shadowing, Visible Light Communication (vlc), Wireless Networks, Automation, Behavioral Research, Carrier Mobility, Light, Network Architecture, Wireless Networks, Mathematical Frameworks, Maximal Ratio Combining (mrc), Network Simulation, Probabilistic Modeling, Resource Allocation Policy, Selection Diversity, Shadowing, Visible Light Communications (vlc), Visible Light Communication, Automation, Behavioral research, Carrier mobility, Light, Network architecture, Wireless networks, Mathematical frameworks, Maximal ratio combining (MRC), Network simulation, Probabilistic modeling, Resource allocation policy, Selection diversity, shadowing, Visible light communications (VLC), Visible light communication, Mobility, wireless networks, network simulation, General Computer Science, visible light communication (VLC), General Engineering, General Materials Science, shadowing, Electrical engineering. Electronics. Nuclear engineering, TK1-9971

Fields of Science

0202 electrical engineering, electronic engineering, information engineering, 02 engineering and technology

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OpenCitations Citation Count
17

Source

IEEE Access

Volume

8

Issue

Start Page

39336

End Page

39348
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CrossRef : 2

Scopus : 21

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Mendeley Readers : 17

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