An experimental evaluation of a 3D visible light positioning system in an industrial environment with receiver tilt and multipath reflections
Almadani, Yousef and Ijaz, Muhammad and Adebisi, Bamidele and Rajbhandari, Sujan and Bastiaens, Sander and Joseph, Wout and Plets, David (2021) An experimental evaluation of a 3D visible light positioning system in an industrial environment with receiver tilt and multipath reflections. Optics Communications, 483. 126654. ISSN 0030-4018 (https://doi.org/10.1016/j.optcom.2020.126654)
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Abstract
In this paper, two different three-dimensional (3D) indoor visible light positioning (VLP) algorithms are experimentally assessed for an industrial environment. The Cayley–Menger determinant (CMD) and linear least square (LLS) trilateration algorithms use the received signal strength (RSS) to estimate the receiver’s 3D position without prior knowledge of its height. The unknown 3D position of the receiver is estimated by the trilateration algorithms coupled with a cost function under different realistic scenarios. The performances of the algorithms are experimentally evaluated in terms of positioning error by considering two different light-emitting diode (LED) configurations in the presence of different receiver tilt angles, and with multipath reflections. It is observed that the widespread square LED configuration results in position ambiguities while a star-shaped configuration is much more accurate. Experimental tests performed in a 4 m × 4 m × 4.1 m area with four LEDs reported a median positioning error of 10.6 and 10.5 cm using the LLS and CMD algorithms, respectively, without the presence of receiver tilt or multipath reflections. However, when a receiver tilt of 10° was added, the median error increased to 22.7 cm using the LLS algorithm and 21.6 cm using the CMD algorithm. Overall, the achieved mean and maximum values using the LLS algorithm were 13.1 and 39 cm, respectively, while they were 12.2 and 34 cm using the CMD algorithm.
ORCID iDs
Almadani, Yousef, Ijaz, Muhammad, Adebisi, Bamidele, Rajbhandari, Sujan ORCID: https://orcid.org/0000-0001-8742-118X, Bastiaens, Sander, Joseph, Wout and Plets, David;-
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Item type: Article ID code: 87483 Dates: DateEvent15 March 2021Published8 December 2020Published Online27 November 2020Accepted22 June 2020SubmittedSubjects: Science > Physics > Optics. Light
Technology > Electrical engineering. Electronics Nuclear engineeringDepartment: Faculty of Science > Physics > Institute of Photonics Depositing user: Pure Administrator Date deposited: 01 Dec 2023 10:34 Last modified: 11 Nov 2024 14:06 URI: https://strathprints.strath.ac.uk/id/eprint/87483