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Layout optimization method of new visible light communication light source in mine tunnel
Author: HE Junyi,FAN Guanghui,ZHANG Min,HAN Yijie,WU Mengxiang,FENG Jiashen Time: 2024-03-25 Counts:

doi:10.16186/j.cnki.1673-9787.2022040020

Received:2023/04/08

Revised:2023/08/09

Published:2024/03/25

Layout optimization method of new visible light communication light source in mine tunnel

HE JunyiFAN GuanghuiZHANG MinHAN YijieWU MengxiangFENG Jiashen

School of Computer Science and TechnologyHenan Polytechnic UniversityJiaozuo 454000HenanChina

Abstract: Objectives Aiming at the problem of large differences in visible light communication signals in underground mine tunnelsand increased signal errors at the receiving enda new visible light communication light source layout method in underground mine tunnels was proposed. Methods Compared with existing light source layout methodsthe system performance of the two layout methods was evaluated from three aspectsilluminationreceived power and signal-to-noise ratio. The coefficients of variation of illumination uniformitypower standard deviation and signal-to-noise ratio were introduced to evaluate the overall performance of the system. Results Through simulation experiments the impact of different half-power angles on the system performance of the layout method in this paper was analyzedand it was concluded that the optimal value of the half-power angle was 50°~70°.When the half-power angle was 70°,compared with the existing light source layout methodthe illumination uniformity of the layout method proposed in this article was reduced from 0.758 to 0.407a reduction of 46.3%and the difference between the minimum illumination and the maximum illumination was smallerthe illumination distribution was more uniformin terms of received powerthe power standard deviation was reduced from 0.97 to 0.42a reduction of 56.7% and the power fluctuation was reduced tooand the received power distribution was more uniformin terms of signal-to-noise ratiothe signal-to-noise ratio variation coefficient was reduced from 0.013 7 dropped to 0.007 2a reduction of 47.7%and the signal distribution was more uniform. Conclusions The light source layout method proposed in this article was overall better than existing methodsand can provide a new solution for the light source layout in underground mine tunnels.

Key words:underground mine tunnellight source layoutsimulation analysisvisible light communication

 

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