Capacity and Outage of Terahertz Communications with User Micro-mobility and Beam Misalignment

04/10/2020
by   Vitaly Petrov, et al.
0

User equipment mobility is one of the primary challenges for the design of reliable and efficient wireless links over millimeter-wave and terahertz bands. These high-rate communication systems use directional antennas and therefore have to constantly maintain alignment between transmitter and receiver beams. For terahertz links, envisioned to employ radiation patterns of no more than few degrees wide, not only the macro-scale user mobility (human walking, car driving, etc.) but also the micro-scale mobility - spontaneous shakes and rotations of the device - becomes a severe issue. In this paper, we propose a mathematical framework for the first-order analysis of the effects caused by micro-mobility on the capacity and outage in terahertz communications. The performance of terahertz communications is compared with and without micro-mobility illustrating the difference of up to 1 Tbit/s or 75 response to this gap, it is finally shown how the negative effects of the micro-mobility can be partially addressed by a proper adjustment of the terahertz antenna arrays and the period of beam realignment procedure.

READ FULL TEXT
research
05/20/2022

Beam Training and Tracking in MmWave Communication: A Survey

Communicating on millimeter wave (mmWave) bands is ushering in a new epo...
research
01/12/2021

Two beams are better than one: Enabling reliable and high throughput mmWave links

Millimeter-wave communication with high throughput and high reliability ...
research
09/13/2021

Learning-Based UE Classification in Millimeter-Wave Cellular Systems With Mobility

Millimeter-wave cellular communication requires beamforming procedures t...
research
02/19/2021

Deep Learning-based Beam Tracking for Millimeter-wave Communications under Mobility

In this paper, we propose a deep learning-based beam tracking method for...
research
01/17/2022

Reliable Beam Tracking with Dynamic Beamwidth Adaptation in Terahertz (THz) Communications

THz communication is regarded as one of the potential key enablers for n...
research
03/01/2020

Adaptive Millimeter-Wave Communications Exploiting Mobility and Blockage Dynamics

Mobility may degrade the performance of next-generation vehicular networ...
research
11/13/2019

MOTH- Mobility-induced Outages in THz: A Beyond 5G (B5G) application

5G will enable the growing demand for Internet of Things (IoT), high-res...

Please sign up or login with your details

Forgot password? Click here to reset