2014Unpublished venueRequires access

Simulating vehicular visible light communication: Physical radio and MAC modeling

Boris Tomaš, Hsin‐Mu Tsai, Mate Boban

Open publisher page 23 citations

Abstract

This paper presents work in progress on designing a transceiver model for realistic simulation of vehicular visible light communications (V2LC). We describe visible light communications (VLC) transceiver design and the most important operating procedures. We tested the VLC transceiver prototype design using a modified version of the 802.11 MAC protocol. Tests include three environments of different complexity levels that reflect relevant real life situations. Finally, we show preliminary results in the form of delay and packet delivery ratio.

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What this paper is about

This paper presents work in progress on designing a transceiver model for realistic simulation of vehicular visible light communications (V2LC). We describe visible light communications (VLC) transceiver design and the most important operating procedures. We tested the VLC transceiver prototype design using a modified version of the 802.11 MAC protocol. Tests include three environments of different complexity levels that reflect relevant real life situations. Finally, we show preliminary results in the form of delay and packet delivery ratio.

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OpenAlex reports 23 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This paper presents work in progress on designing a transceiver model for realistic simulation of vehicular visible light communications (V2LC). We describe visible light communications (VLC) transceiver design and the most important operating procedures. We tested the VLC transceiver prototype design using a modified version of the 802.11 MAC protocol. Tests include three environments of different complexity levels that reflect relevant real life situations. Finally, we show preliminary results in the form of delay and packet delivery ratio.

Key concepts: Visible light communication, Transceiver, Computer science, Network packet, Computer network, Wireless, Protocol (science), Real-time computing

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