Study on the k-Connectivity of UV Communication Network with Pulse Position Modulation

Owing to the high confidentiality, low potentiometer resolution, strong anti-interference ability and good environmental adaptability, ultraviolet (UV) communication is widely used in the field of optical communication. To better exploit the advantages and attenuate the impact of disadvantages such...

Full description

Saved in:
Bibliographic Details
Published in2022 IEEE 12th International Conference on Electronics Information and Emergency Communication (ICEIEC) pp. 127 - 135
Main Authors Cao, Xinyue, Li, Cheng, Li, Jianhua, Cheng, Yuanyuan, Wang, Jingyuan, Zhao, Jiyong, Xu, Zhiyong
Format Conference Proceeding
LanguageEnglish
Published IEEE 15.07.2022
Subjects
Online AccessGet full text

Cover

Loading…
More Information
Summary:Owing to the high confidentiality, low potentiometer resolution, strong anti-interference ability and good environmental adaptability, ultraviolet (UV) communication is widely used in the field of optical communication. To better exploit the advantages and attenuate the impact of disadvantages such as serious atmospheric loss and short transmission distance, a study of wireless UV self-organizing network with pulse position modulation is carried out in this study. Based on the Monte Carlo method, simulation analysis is carried out, and the path loss parameters under different transceiver elevation angles are obtained. Besides, the communication radii of UV nodes with pulse position modulation are derived, and the correlation between k-connectivity and some communication parameters of UV networks is explored. The results illustrate that a negative correlation is maintained between network connectivity rate and data rate; and node density and transmit power are positively correlated. The research in this study can provide reference for future applications of UV communication networks.
ISBN:9781665407533
1665407530
ISSN:2377-844X
DOI:10.1109/ICEIEC54567.2022.9835046