Communication aspects of visible light positioning (VLP) systems using a quadrature angular diversity aperture (QADA) receiver

Mohammed M.A. Mohammed, Cuiwei He, Stefanie Cincotta, Adrian Neild, Jean Armstrong

Research output: Contribution to journalArticleResearchpeer-review

4 Citations (Scopus)

Abstract

Visible light positioning (VLP) is a promising indoor localization system in which light emitting diode (LED) luminaires are used as positioning beacons. Data communication is an essential aspect of any VLP system, as each luminaire must transmit information about its own location to the receiver. The quadrature angular diversity aperture (QADA) is a new receiver designed specifically for VLP systems using angle-of-arrival estimation. Previous QADA research has focused only on positioning and assumed error-free communication. In this paper, we investigate, via simulations and experiment, the actual communication characteristics of a VLP system that uses a QADA receiver. We calculate the signal-to-noise ratio and bit-error-rates for a range of scenarios and demonstrate the impact of the dimensions of the receiver. We show that reliable communication is assured in typical operating scenarios, proving that communication will not be a limiting factor when using QADA in VLP systems.

Original languageEnglish
Article number1977
Pages (from-to)1-24
Number of pages24
JournalSensors
Volume20
Issue number7
DOIs
Publication statusPublished - 1 Apr 2020

Keywords

  • ACO-OFDM
  • Aperture
  • Optical communication
  • Photoreceiver
  • Visible light positioning (VLP)

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