An Indoor Visible Light Positioning System Using Tilted LEDs with High Accuracy

Author:

Chaudhary Neha,Younus Othman IsamORCID,Alves Luis Nero,Ghassemlooy ZabihORCID,Zvanovec StanislavORCID,Le-Minh Hoa

Abstract

The accuracy of the received signal strength-based visible light positioning (VLP) system in indoor applications is constrained by the tilt angles of transmitters (Txs) and receivers as well as multipath reflections. In this paper, for the first time, we show that tilting the Tx can be beneficial in VLP systems considering both line of sight (LoS) and non-line of sight transmission paths. With the Txs oriented towards the center of the receiving plane (i.e., the pointing center F), the received power level is maximized due to the LoS components on F. We also show that the proposed scheme offers a significant accuracy improvement of up to ~66% compared with a typical non-tilted Tx VLP at a dedicated location within a room using a low complex linear least square algorithm with polynomial regression. The effect of tilting the Tx on the lighting uniformity is also investigated and results proved that the uniformity achieved complies with the European Standard EN 12464-1. Furthermore, we show that the accuracy of VLP can be further enhanced with a minimum positioning error of 8 mm by changing the height of F.

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

Cited by 23 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. A Single LED-based Indoor Visible Light Positioning System – Recent Trends and the Impact of Ambient Light on Positioning Accuracy;2023 South American Conference On Visible Light Communications (SACVLC);2023-11-08

2. Experimental Demonstration of an Optical Camera Communication System Using a Large Off-the-Shelf LED Panel;2023 South American Conference On Visible Light Communications (SACVLC);2023-11-08

3. Comprehensive Investigation and Evaluation of an Indoor 3D System Performance Based on Visible Light Communication;2023 3rd International Conference on Emerging Smart Technologies and Applications (eSmarTA);2023-10-10

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5. Indoor 3D Visible Light Positioning Analysis with Channel Estimation Errors;2023 30th International Conference on Systems, Signals and Image Processing (IWSSIP);2023-06-27

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