Internodal Distance Distributions for Static and Mobile Nodes in 2D/3D Wireless Networks

Fuente: arXiv
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Main Authors: Vaiopoulos, Nicholas, Vavoulas, Alexander, Sandalidis, Harilaos G., Delibasis, Konstantinos K., Varoutas, Dimitris
Format: Preprint
Published: 2025
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author Vaiopoulos, Nicholas
Vavoulas, Alexander
Sandalidis, Harilaos G.
Delibasis, Konstantinos K.
Varoutas, Dimitris
author_facet Vaiopoulos, Nicholas
Vavoulas, Alexander
Sandalidis, Harilaos G.
Delibasis, Konstantinos K.
Varoutas, Dimitris
contents This letter presents a unified analytical framework for internodal distance distributions in 2D and 3D wireless networks, with nodes confined to concentric circular or spherical regions. Four deployment scenarios are considered, covering all combinations of static (uniform) and mobile (random waypoint-based) nodes. For each scenario, closed-form expressions for the internodal distance probability density functions are derived, incorporating both geometric constraints and spatial effects introduced by mobility. Equal-radius cases are also addressed. Beta-distribution approximations and Monte Carlo simulations demonstrate the accuracy and validity of the analytical results.
format Preprint
id arxiv_https___arxiv_org_abs_2511_21864
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Internodal Distance Distributions for Static and Mobile Nodes in 2D/3D Wireless Networks
Vaiopoulos, Nicholas
Vavoulas, Alexander
Sandalidis, Harilaos G.
Delibasis, Konstantinos K.
Varoutas, Dimitris
Signal Processing
This letter presents a unified analytical framework for internodal distance distributions in 2D and 3D wireless networks, with nodes confined to concentric circular or spherical regions. Four deployment scenarios are considered, covering all combinations of static (uniform) and mobile (random waypoint-based) nodes. For each scenario, closed-form expressions for the internodal distance probability density functions are derived, incorporating both geometric constraints and spatial effects introduced by mobility. Equal-radius cases are also addressed. Beta-distribution approximations and Monte Carlo simulations demonstrate the accuracy and validity of the analytical results.
title Internodal Distance Distributions for Static and Mobile Nodes in 2D/3D Wireless Networks
topic Signal Processing
url https://arxiv.org/abs/2511.21864