2019•International Journal of Image Graphics and Signal ProcessingOpen access

Signal Propagation Analysis at 28GHz and 73GHz Millimeter Wave bands for Next Generation Networks

Prerna Kumari, I. Santi Prabha

Open full text 7 citations

Abstract

Fifth generation (5G) mobile networks demand large bandwidth with the explosive growth of data driven applications.This necessitates enormous amount of spectrum in the Millimeter wave (mmWave) bands to greatly enhance the communication capacity.The mmWave band offers the potential for highbandwidth communication channels in cellular networks.Relative to conventional networks, dense mmWave networks can achieve both higher data rates and comparable coverage.The paper presents the performance analysis of mobile networks in terms of propagation path loss, coverage probability and data rates for different mm wave operating frequencies of 28GHz and 73GHz.A scenario of multi-users in a micro cell is considered in different environments i.e. rural, sub urban and urban regions and the performance parameters in each case are analyzed.Millimeter wave cellular networks at 28GHz offer less rain attenuation compared to 73GHz and is useful for next generation communications with enhanced data rates and coverage.

Open-access reader

About this research paper

What this paper is about

Fifth generation (5G) mobile networks demand large bandwidth with the explosive growth of data driven applications.This necessitates enormous amount of spectrum in the Millimeter wave (mmWave) bands to greatly enhance the communication capacity.The mmWave band offers the potential for highbandwidth communication channels in cellular networks.Relative to conventional networks, dense mmWave networks can achieve both higher data rates and comparable coverage.The paper presents the performance analysis of mobile networks in terms of propagation path loss, coverage probability and data rates for different mm wave operating frequencies of 28GHz and 73GHz.A scenario of multi-users in a micro cell is considered in different environments i.e. rural, sub urban and urban regions and the performance parameters in each case are analyzed.Millimeter wave cellular networks at 28GHz offer less rain attenuation compared to 73GHz and is useful for next generation communications with enhanced data rates and coverage.

Why it matters

OpenAlex reports 7 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Fifth generation (5G) mobile networks demand large bandwidth with the explosive growth of data driven applications.This necessitates enormous amount of spectrum in the Millimeter wave (mmWave) bands to greatly enhance the communication capacity.The mmWave band offers the potential for highbandwidth communication channels in cellular networks.Relative to conventional networks, dense mmWave networks can achieve both higher data rates and comparable coverage.The paper presents the performance analysis of mobile networks in terms of propagation path loss, coverage probability and data rates for different mm wave operating frequencies of 28GHz and 73GHz.A scenario of multi-users in a micro cell is considered in different environments i.e. rural, sub urban and urban regions and the performance parameters in each case are analyzed.Millimeter wave cellular networks at 28GHz offer less rain attenuation compared to 73GHz and is useful for next generation communications with enhanced data rates and coverage.

Key concepts: Extremely high frequency, Computer science, Path loss, Attenuation, Cellular network, Cellular communication, Bandwidth (computing), Mobile telephony

Related papers

Back to paper searchBrowse research topicsOriginal source
Signal Propagation Analysis at 28GHz and 73GHz Millimeter Wave bands for Next Generation Networks — Research Paper | ScholarLens