Preprint

·2020 OPEN ACCESS

A Holistic Investigation on Terahertz Propagation and Channel Modeling Toward Vertical Heterogeneous Networks

Kürşat Tekbıyık , Ali Rıza Ekti , Güneş Karabulut Kurt , Ali Görçin YTU , Halim Yanıkömeroğlu YTU

arXiv (Cornell University)

Abstract

User-centric and low latency communications can be enabled not only by small cells but also through ubiquitous connectivity. Recently, the vertical heterogeneous network (V-HetNet) architecture is proposed to backhaul/fronthaul a large number of small cells. Like an orchestra, the V-HetNet is a polyphony of different communication ensembles, including geostationary orbit (GEO), and low-earth orbit (LEO) satellites (e.g., CubeSats), and networked flying platforms (NFPs) along with terrestrial communication links. In this study, we propose the Terahertz (THz) communications to enable the elements of V-HetNets to function in harmony. As THz links offer a large bandwidth, leading to ultra-high data rates, it is suitable for backhauling and fronthauling small cells. Furthermore, THz communications can support numerous applications from inter-satellite links to in-vivo nanonetworks. However, to savor this harmony, we need accurate channel models. In this paper, the insights obtained through our measurement campaigns are highlighted, to reveal the true potential of THz communications in V-HetNets.

Keywords

Heterogeneous network Geostationary orbit Computer science Terahertz radiation Backhaul (telecommunications) Low earth orbit Computer network Communications satellite Bandwidth (computing) Wireless Telecommunications Satellite Wireless network Engineering Physics Aerospace engineering Optoelectronics

Subject Areas

Molecular Communication and Nanonetworks ·Biomedical Engineering ·Physical Sciences
Wireless Body Area Networks ·Biomedical Engineering ·Physical Sciences
Opportunistic and Delay-Tolerant Networks ·Computer Networks and Communications ·Physical Sciences

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