@inproceedings{d4248b6d9dd94a7ebf28096776549cfa,
title = "Propagation, blockage and coverage evaluation in 5G urban wireless networks",
abstract = "Using ray tracing and based on a set of realistic simulations performed in MATLAB {\textregistered} and Open Street Maps, this document relates the coverage problem in urban 5G wireless networks with other relevant propagation and signal blockage stochastic models. From a statistical analysis of these results, the main characteristics of shadow fading are extracted and compared. In addition, a review of the current IMT-2020 and 3GPP standards on radio propagation for 5G has been carried out.",
keywords = "5G wireless, Close In, NYUSIM, Ray Tracing, coverage, propagation models, standards",
author = "{Anthony Salazar}, S. and Arevalo, {German V.} and {Rene Jativa}, E.",
note = "Publisher Copyright: {\textcopyright} 2021 IEEE.; 2021 Global Congress on Electrical Engineering, GC-ElecEng 2021 ; Conference date: 10-12-2021 Through 12-12-2021",
year = "2021",
doi = "10.1109/GC-ElecEng52322.2021.9788150",
language = "Ingl{\'e}s",
series = "Proceedings of 2021 Global Congress on Electrical Engineering, GC-ElecEng 2021",
publisher = "Institute of Electrical and Electronics Engineers Inc.",
pages = "55--60",
editor = "Jaser Mahasneh",
booktitle = "Proceedings of 2021 Global Congress on Electrical Engineering, GC-ElecEng 2021",
}