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Autori principali: Wu, Teng, Li, Jiandong, Liu, Junyu, Sheng, Min, Mohammadi, Mohammadali, Ngo, Hien Quoc, Matthaiou, Michail
Natura: Preprint
Pubblicazione: 2026
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Accesso online:https://arxiv.org/abs/2602.21793
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author Wu, Teng
Li, Jiandong
Liu, Junyu
Sheng, Min
Mohammadi, Mohammadali
Ngo, Hien Quoc
Matthaiou, Michail
author_facet Wu, Teng
Li, Jiandong
Liu, Junyu
Sheng, Min
Mohammadi, Mohammadali
Ngo, Hien Quoc
Matthaiou, Michail
contents We investigate network availability (NA) in aerial heterogeneous networks (AHetNets) for effective emergency rescue, where diverse delay-constrained communication services must be provided to user equipments (UEs) with varying mobility. The heterogeneity in delay constraints and UE mobility introduces resource allocation conflicts and imbalances, which undermine communication reliability and challenge NA. Although unified resource allocation (URA) can mitigate these issues, it remains unclear whether NA can be sustained under such diverse conditions. To address this, we derive expressions for the lower bound (LB) on NA in AHetNets under URA. Our analysis reveals that extended heterogeneity significantly degrades the LB due to resource limitations-even when the heterogeneity stems from additional services under less stringent delay constraints (LSDC) or from UEs with lower mobility. To overcome this degradation, we formulate and solve a joint optimization problem for the number of UEs sharing time-frequency resources ($K$) and pilot length ($ξ$), aiming to enhance the LB by improving spatial, frequency, and temporal resource efficiency. Simulation results validate our analysis and demonstrate that jointly optimizing $K$ and $ξ$ enables AHetNets to achieve the target NA under greater heterogeneity, outperforming existing resource allocation policies.
format Preprint
id arxiv_https___arxiv_org_abs_2602_21793
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Availability of Aerial Heterogeneous Networks for Reliable Emergency Communications
Wu, Teng
Li, Jiandong
Liu, Junyu
Sheng, Min
Mohammadi, Mohammadali
Ngo, Hien Quoc
Matthaiou, Michail
Signal Processing
We investigate network availability (NA) in aerial heterogeneous networks (AHetNets) for effective emergency rescue, where diverse delay-constrained communication services must be provided to user equipments (UEs) with varying mobility. The heterogeneity in delay constraints and UE mobility introduces resource allocation conflicts and imbalances, which undermine communication reliability and challenge NA. Although unified resource allocation (URA) can mitigate these issues, it remains unclear whether NA can be sustained under such diverse conditions. To address this, we derive expressions for the lower bound (LB) on NA in AHetNets under URA. Our analysis reveals that extended heterogeneity significantly degrades the LB due to resource limitations-even when the heterogeneity stems from additional services under less stringent delay constraints (LSDC) or from UEs with lower mobility. To overcome this degradation, we formulate and solve a joint optimization problem for the number of UEs sharing time-frequency resources ($K$) and pilot length ($ξ$), aiming to enhance the LB by improving spatial, frequency, and temporal resource efficiency. Simulation results validate our analysis and demonstrate that jointly optimizing $K$ and $ξ$ enables AHetNets to achieve the target NA under greater heterogeneity, outperforming existing resource allocation policies.
title Availability of Aerial Heterogeneous Networks for Reliable Emergency Communications
topic Signal Processing
url https://arxiv.org/abs/2602.21793