Cooperative Tri-Point Model-Based Ground-to-Air Coverage Extension in Beyond 5G Networks

Fuente: arXiv
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Main Authors: Cai, Ziwei, Sheng, Min, Liu, Junju, Zhao, Chenxi, Li, Jiandong
Format: Preprint
Published: 2024
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_version_ 1866929214217781248
author Cai, Ziwei
Sheng, Min
Liu, Junju
Zhao, Chenxi
Li, Jiandong
author_facet Cai, Ziwei
Sheng, Min
Liu, Junju
Zhao, Chenxi
Li, Jiandong
contents The utilization of existing terrestrial infrastructures to provide coverage for aerial users is a potentially low-cost solution. However, the already deployed terrestrial base stations (TBSs) result in weak ground-to-air (G2A) coverage due to the down-tilted antennas. Furthermore, achieving optimal coverage across the entire airspace through antenna adjustment is challenging due to the complex signal coverage requirements in three-dimensional space, especially in the vertical direction. In this paper, we propose a cooperative tri-point (CoTP) model-based method that utilizes cooperative beams to enhance the G2A coverage extension. To utilize existing TBSs for establishing effective cooperation, we prove that the cooperation among three TBSs can ensure G2A coverage with a minimum coverage overlap, and design the CoTP model to analyze the G2A coverage extension. Using the model, a cooperative coverage structure based on Delaunay triangulation is designed to divide triangular prism-shaped subspaces and corresponding TBS cooperation sets. To enable TBSs in the cooperation set to cover different height subspaces while maintaining ground coverage, we design a cooperative beam generation algorithm to maximize the coverage in the triangular prism-shaped airspace. The simulation results and field trials demonstrate that the proposed method can efficiently enhance the G2A coverage extension while guaranteeing ground coverage.
format Preprint
id arxiv_https___arxiv_org_abs_2401_09757
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Cooperative Tri-Point Model-Based Ground-to-Air Coverage Extension in Beyond 5G Networks
Cai, Ziwei
Sheng, Min
Liu, Junju
Zhao, Chenxi
Li, Jiandong
Information Theory
Artificial Intelligence
The utilization of existing terrestrial infrastructures to provide coverage for aerial users is a potentially low-cost solution. However, the already deployed terrestrial base stations (TBSs) result in weak ground-to-air (G2A) coverage due to the down-tilted antennas. Furthermore, achieving optimal coverage across the entire airspace through antenna adjustment is challenging due to the complex signal coverage requirements in three-dimensional space, especially in the vertical direction. In this paper, we propose a cooperative tri-point (CoTP) model-based method that utilizes cooperative beams to enhance the G2A coverage extension. To utilize existing TBSs for establishing effective cooperation, we prove that the cooperation among three TBSs can ensure G2A coverage with a minimum coverage overlap, and design the CoTP model to analyze the G2A coverage extension. Using the model, a cooperative coverage structure based on Delaunay triangulation is designed to divide triangular prism-shaped subspaces and corresponding TBS cooperation sets. To enable TBSs in the cooperation set to cover different height subspaces while maintaining ground coverage, we design a cooperative beam generation algorithm to maximize the coverage in the triangular prism-shaped airspace. The simulation results and field trials demonstrate that the proposed method can efficiently enhance the G2A coverage extension while guaranteeing ground coverage.
title Cooperative Tri-Point Model-Based Ground-to-Air Coverage Extension in Beyond 5G Networks
topic Information Theory
Artificial Intelligence
url https://arxiv.org/abs/2401.09757