Abstract This paper reports detailed propagation analyses of mm-wave indoor networks based numerical simulations of the wireless coverage and measurements of the propagation coefficient at 28 and 38 GHz. Additionally, material characterization of typical buildings materials used in constructions are presented, including: common brick (with and without electrical installations); plaster walls; glazing, Eucatex panels; wooden doors. The computational simulations have been performed using Altair WinProp™ software in order to predict path loss in LOS (Line-of-Sight) and NLOS (Non-Line-of-Sight) environments. The obtained results contributes to the planning of the fifth Generation of mobile communications networks (5G), operating in mm-waves
The goal of the article is to provide a radio propagation algorithm for an outdoor-to-indoor and ind...
The indoor application of wave propagation in the 5G network is essential to fulfill the increasing ...
none3noMM-wave frequency bands at around 27 and 38 GHz have been recently allocated to 5G communicat...
Abstract This paper reports detailed propagation analyses of mm-wave indoor networks based numerical...
Several propagation channel models are designed to verify signal behavior in specific environments f...
The millimeter-wave (mmWave) is expected to deliver a huge bandwidth to address the future demands f...
mm-waves are envisaged as a key enabler for 5G and 6G wireless communications, thanks to the wide ba...
Up to now, 5G has become one of the technologies widely used in many fields. However, many aspects o...
Masters thessis deals with the problematics of wireless signal propagation modeling inside buildings...
Millimeter wave frequency bands present a huge bandwidth for fifth generation wireless communication...
The millimeter-wave (mmWave) is expected to deliver a huge bandwidth to address the future demands f...
Accurate propagation characteristics are essential for future indoor millimeter-wave (mmWave) small ...
Exploitation of the millimetre-wave (mmWave) bands at 28 GHz and above is a key part of the fifth ge...
For the last few decades, the millimeter wave frequency band (30–300 GHz) has been seen as a serious...
The shortage of frequency band below 6 GHz available for communications and data transfer has recent...
The goal of the article is to provide a radio propagation algorithm for an outdoor-to-indoor and ind...
The indoor application of wave propagation in the 5G network is essential to fulfill the increasing ...
none3noMM-wave frequency bands at around 27 and 38 GHz have been recently allocated to 5G communicat...
Abstract This paper reports detailed propagation analyses of mm-wave indoor networks based numerical...
Several propagation channel models are designed to verify signal behavior in specific environments f...
The millimeter-wave (mmWave) is expected to deliver a huge bandwidth to address the future demands f...
mm-waves are envisaged as a key enabler for 5G and 6G wireless communications, thanks to the wide ba...
Up to now, 5G has become one of the technologies widely used in many fields. However, many aspects o...
Masters thessis deals with the problematics of wireless signal propagation modeling inside buildings...
Millimeter wave frequency bands present a huge bandwidth for fifth generation wireless communication...
The millimeter-wave (mmWave) is expected to deliver a huge bandwidth to address the future demands f...
Accurate propagation characteristics are essential for future indoor millimeter-wave (mmWave) small ...
Exploitation of the millimetre-wave (mmWave) bands at 28 GHz and above is a key part of the fifth ge...
For the last few decades, the millimeter wave frequency band (30–300 GHz) has been seen as a serious...
The shortage of frequency band below 6 GHz available for communications and data transfer has recent...
The goal of the article is to provide a radio propagation algorithm for an outdoor-to-indoor and ind...
The indoor application of wave propagation in the 5G network is essential to fulfill the increasing ...
none3noMM-wave frequency bands at around 27 and 38 GHz have been recently allocated to 5G communicat...