Universiti Teknologi Malaysia Institutional Repository

UWB channel characterization in 28 ghz millimeter waveband for 5G cellular networks

Al-Samman, Ahmed M. and A. Rahman, Tharek and Ngah, Razali (2016) UWB channel characterization in 28 ghz millimeter waveband for 5G cellular networks. Jurnal Teknologi, 78 (6-11). pp. 19-23. ISSN 0127-9696

[img]
Preview
PDF
327kB

Official URL: https://www.scopus.com/inward/record.uri?eid=2-s2....

Abstract

The demands of high data rate transmission for future wireless communication technologies are increasing rapidly. The current bands for cellular network will not be able to satisfy these requirements. The millimeter wave (mm-wave) bands are the candidate bands for the future cellular networks. The 28 GHz band is the strongest candidate for 5G cellular networks. The large bandwidth at this band is one of the main parameters that make the mm-wave bands promising candidate for the future cellular networks. To know the wideband channel behavior in mm-wave bands, the wideband channel characterizations are required. In this paper, the 3D WINNER model is used to model the wideband channel at 28 GHz band. Based on this model, the time dispersion parameters at 28 GHz mm-wave band are investigated. The root mean square delay spread and the mean excess delay are the main parameters that can be used to characterize the wideband channel. Morever, the cumulative distribution function (CDF) is used to model the RMS delay spreads. The results show that the RMS delay spread varies between 4.1 ns and 443.7 ns.

Item Type:Article
Uncontrolled Keywords:RMS delay spread, UWB channel
Subjects:T Technology > TK Electrical engineering. Electronics Nuclear engineering
Divisions:Electrical Engineering
ID Code:71255
Deposited By: Siti Nor Hashidah Zakaria
Deposited On:15 Nov 2017 04:45
Last Modified:15 Nov 2017 04:45

Repository Staff Only: item control page