Integrating HAPS, LEO, and Terrestrial Networks: A Cost-Performance Study for IoT Connectivity

Fuente: arXiv
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Auteurs principaux: Sant'Ana, Jean Michel de Souza, Tondo, Felipe Augusto, Mahmood, Nurul Huda, Mahmood, Aamir
Format: Preprint
Publié: 2026
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author Sant'Ana, Jean Michel de Souza
Tondo, Felipe Augusto
Mahmood, Nurul Huda
Mahmood, Aamir
author_facet Sant'Ana, Jean Michel de Souza
Tondo, Felipe Augusto
Mahmood, Nurul Huda
Mahmood, Aamir
contents This work evaluates the potential of High-Altitude Platform Stations (HAPS) and Low Earth Orbit (LEO) satellites as alternative or complementary systems to enhance Internet of Things (IoT) connectivity. We first analyze the transmission erasure probability under different connectivity configurations, including only HAPS or LEO satellites, as well as hybrid architectures that integrate both aerial/spatial and terrestrial infrastructures. To make the analysis more realistic, we considered movement of LEO satellites regarding a fixed region, elevation angle between gateway and devices, and different fading models for terrestrial and non-terrestrial communication. We also analyze LR-FHSS (Long-Range Frequency Hopping Spread Spectrum) random access uplink technology as a potential use case for IoT connectivity, showing the scalability impact of the scenarios. The simulation results demonstrate that HAPS can effectively complement sparse terrestrial networks and improve the performance of satellite-based systems in specific scenarios. Furthermore, considering the deployment and operational costs, respectively, CAPEX and OPEX, the economic analysis reveals that although HAPS exhibits higher costs, these remain within a comparable order of magnitude to LEO and terrestrial deployments. In addition, specific use cases, such as natural disasters, transform HAPS into a competitive technology for conventional infrastructures.
format Preprint
id arxiv_https___arxiv_org_abs_2601_18361
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Integrating HAPS, LEO, and Terrestrial Networks: A Cost-Performance Study for IoT Connectivity
Sant'Ana, Jean Michel de Souza
Tondo, Felipe Augusto
Mahmood, Nurul Huda
Mahmood, Aamir
Networking and Internet Architecture
This work evaluates the potential of High-Altitude Platform Stations (HAPS) and Low Earth Orbit (LEO) satellites as alternative or complementary systems to enhance Internet of Things (IoT) connectivity. We first analyze the transmission erasure probability under different connectivity configurations, including only HAPS or LEO satellites, as well as hybrid architectures that integrate both aerial/spatial and terrestrial infrastructures. To make the analysis more realistic, we considered movement of LEO satellites regarding a fixed region, elevation angle between gateway and devices, and different fading models for terrestrial and non-terrestrial communication. We also analyze LR-FHSS (Long-Range Frequency Hopping Spread Spectrum) random access uplink technology as a potential use case for IoT connectivity, showing the scalability impact of the scenarios. The simulation results demonstrate that HAPS can effectively complement sparse terrestrial networks and improve the performance of satellite-based systems in specific scenarios. Furthermore, considering the deployment and operational costs, respectively, CAPEX and OPEX, the economic analysis reveals that although HAPS exhibits higher costs, these remain within a comparable order of magnitude to LEO and terrestrial deployments. In addition, specific use cases, such as natural disasters, transform HAPS into a competitive technology for conventional infrastructures.
title Integrating HAPS, LEO, and Terrestrial Networks: A Cost-Performance Study for IoT Connectivity
topic Networking and Internet Architecture
url https://arxiv.org/abs/2601.18361