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Millimeter-Wave Directional Path Loss Models in the 26 GHz, 32 GHz, and 39 GHz Bands for Small Cell 5G Cellular System

Khalily, Mohsen, Ghoraishi, Mir, Taheri, Sohail, Payami, Sohail and Tafazolli, Rahim (2018) Millimeter-Wave Directional Path Loss Models in the 26 GHz, 32 GHz, and 39 GHz Bands for Small Cell 5G Cellular System In: EuCAP 2018, the 12th European Conference on Antennas and Propagation, 9 - 13 April 2018, London, UK.

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Abstract

This paper presents empirically-based large-scale propagation path loss models for small cell fifth generation (5G) cellular system in the millimeter-wave bands, based on practical propagation channel measurements at 26 GHz, 32 GHz, and 39 GHz. To characterize path loss at these frequency bands for 5G small cell scenarios, extensive wideband and directional channel measurements have been performed on the campus of the University of Surrey. Close-in reference (CI), and 3GPP path loss models have been studied, and large-scale fading characteristics have been obtained and presented.

Item Type: Conference or Workshop Item (Conference Paper)
Divisions : Faculty of Engineering and Physical Sciences > Electronic Engineering
Authors :
NameEmailORCID
Khalily, Mohsenm.khalily@surrey.ac.uk
Ghoraishi, Mirm.ghoraishi@surrey.ac.uk
Taheri, Sohails.taheri@surrey.ac.uk
Payami, Sohails.payami@surrey.ac.uk
Tafazolli, RahimR.Tafazolli@surrey.ac.uk
Date : 13 April 2018
Copyright Disclaimer : Copyright 2018 EurAAP. Published by IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for all other uses, in any current or future media, including reprinting/republishing this material for advertising or promotional purposes, creating new collective works, for resale or redistribution to servers or lists, or reuse of any copyrighted component of this work in other works.
Uncontrolled Keywords : 26 GHz, 32 GHz, 39 GHz, Millimeter-wave, small cell, path loss, 5G.
Depositing User : Melanie Hughes
Date Deposited : 11 Jan 2018 13:45
Last Modified : 13 Apr 2018 02:08
URI: http://epubs.surrey.ac.uk/id/eprint/845580

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