Performance evaluation of THz wireless systems under the joint impact of misalignment fading and phase noise

07/19/2019
by   Evangelos N. Papsotiriou, et al.
0

In this paper, we investigate the joint impact of misalignment fading and local oscillator (LO) phase noise (PHN) in multi-carrier terahertz (THz) wireless systems. In more detail, after establishing a suitable system model that takes into account the particularities of the THz channel, as well as the transceivers characteristics, we present simulation results that quantify the joint impact of misalignment fading and PHN in terms of average signal-to-interference-plus-noise-ratio (SINR) and outage probability (OP).

READ FULL TEXT

page 1

page 2

research
03/24/2018

Physical Layer Security in the Presence of Interference

We evaluate and quantify the joint effect of fading and multiple interfe...
research
02/04/2021

On Fading Channel Dependency Structures with a Positive Zero-Outage Capacity

With emerging technologies like 6G, many new applications like autonomou...
research
03/29/2021

Performance Analysis of I/Q Imbalance with Hardware Impairments over Fox's H-Fading Channels

Impairments baseband model in-phase and quadrature-phase Imbalance (IQI)...
research
10/04/2019

Ergodic capacity evaluation of wireless THz fiber extenders

This paper focuses on delivering quantified results for the evaluation o...
research
07/12/2022

Statistics of the interaural parameters for dichotic tones in diotic noise (N_0 S_ψ)

Stimuli consisting of an interaurally phase-shifted tone in diotic noise...
research
06/28/2018

Performance of Turbo Coded OFDM Under the Presence of Various Noise Types

A telecommunication system uses carriers in order to transmit informatio...
research
05/09/2019

Stochastic Fading Channel Models with Multiple Dominant Specular Components for 5G and Beyond

We introduce a comprehensive statistical characterization of the multipa...

Please sign up or login with your details

Forgot password? Click here to reset