Impact of Pointing Error on Coverage Performance of 3D Indoor Terahertz Communication Systems

Fuente: arXiv
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Main Authors: Tang, Zhifeng, Yang, Nan, Zhou, Xiangyun, Durrani, Salman, Juntti, Markku, Jornet, Josep Miquel
Format: Preprint
Published: 2026
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author Tang, Zhifeng
Yang, Nan
Zhou, Xiangyun
Durrani, Salman
Juntti, Markku
Jornet, Josep Miquel
author_facet Tang, Zhifeng
Yang, Nan
Zhou, Xiangyun
Durrani, Salman
Juntti, Markku
Jornet, Josep Miquel
contents In this paper, we develop a tractable analytical framework for a three-dimensional (3D) indoor terahertz (THz) communication system to theoretically assess the impact of the pointing error on its coverage performance. Specifically, we model the locations of access points (APs) using a Poisson point process, human blockages as random cylinder processes, and wall blockages through a Boolean straight line process. A pointing error refers to beamforming gain and direction mismatch between the transmitter and receiver. We characterize it based on the inaccuracy of location estimate. We then analyze the impact of this pointing error on the received signal power and derive a tractable expression for the coverage probability, incorporating the multi-cluster fluctuating two-ray distribution to accurately model small-scale fading in THz communications. Aided by simulation results, we corroborate our analysis and demonstrate that the pointing error has a pronounced impact on the coverage probability. Specifically, we find that merely increasing the antenna array size is insufficient to improve the coverage probability and mitigate the detrimental impact of the pointing error, highlighting the necessity of advanced estimation techniques in THz communication systems.
format Preprint
id arxiv_https___arxiv_org_abs_2601_21303
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Impact of Pointing Error on Coverage Performance of 3D Indoor Terahertz Communication Systems
Tang, Zhifeng
Yang, Nan
Zhou, Xiangyun
Durrani, Salman
Juntti, Markku
Jornet, Josep Miquel
Signal Processing
In this paper, we develop a tractable analytical framework for a three-dimensional (3D) indoor terahertz (THz) communication system to theoretically assess the impact of the pointing error on its coverage performance. Specifically, we model the locations of access points (APs) using a Poisson point process, human blockages as random cylinder processes, and wall blockages through a Boolean straight line process. A pointing error refers to beamforming gain and direction mismatch between the transmitter and receiver. We characterize it based on the inaccuracy of location estimate. We then analyze the impact of this pointing error on the received signal power and derive a tractable expression for the coverage probability, incorporating the multi-cluster fluctuating two-ray distribution to accurately model small-scale fading in THz communications. Aided by simulation results, we corroborate our analysis and demonstrate that the pointing error has a pronounced impact on the coverage probability. Specifically, we find that merely increasing the antenna array size is insufficient to improve the coverage probability and mitigate the detrimental impact of the pointing error, highlighting the necessity of advanced estimation techniques in THz communication systems.
title Impact of Pointing Error on Coverage Performance of 3D Indoor Terahertz Communication Systems
topic Signal Processing
url https://arxiv.org/abs/2601.21303