Downlink Coverage and Bit Rate Performance of LEO-Based Non-Terrestrial Networks for NB-IoT
Identifikátory výsledku
Kód výsledku v IS VaVaI
<a href="https://www.isvavai.cz/riv?ss=detail&h=RIV%2F00216305%3A26220%2F26%3A0201052" target="_blank" >RIV/00216305:26220/26:0201052 - isvavai.cz</a>
Výsledek na webu
<a href="https://ieeexplore.ieee.org/abstract/document/11268600" target="_blank" >https://ieeexplore.ieee.org/abstract/document/11268600</a>
DOI - Digital Object Identifier
<a href="http://dx.doi.org/10.1109/ICUMT67815.2025.11268600" target="_blank" >10.1109/ICUMT67815.2025.11268600</a>
Alternativní jazyky
Jazyk výsledku
angličtina
Název v původním jazyce
Downlink Coverage and Bit Rate Performance of LEO-Based Non-Terrestrial Networks for NB-IoT
Popis výsledku v původním jazyce
The integration of Narrowband Internet of Things (NB-IoT) with Non-Terrestrial Networks (NTNs) has emerged as a prominent enabler for global IoT connectivity in regions where terrestrial infrastructures are unavailable or impractical to deploy. Although IoT traffic is inherently uplink-oriented, performance of the downlink transmissions is equally vital for maintaining reliable system operations, yet it has so far received considerably less attention. This paper presents a comprehensive study of downlink coverage and bit rate performance in LEO-based NB-IoT NTN systems. Using simulations with realistic satellite constellation models at 600 km and 1,200 km altitudes, we evaluate minimum link availability, downlink Signal-to-Noise Ratio (SNR) distributions, and achievable physical-layer bit rates under various antenna configurations and constellation sizes. Our results demonstrate that 1,200 km constellations consistently provide stronger downlink performance than their 600km counterparts. Notably, for LEO 1200, with 60 satellites equipped with 0.4 m aperture antennas, end devices can maintain valid connections with the satellites for approximately 30% of the time-almost four times higher than for LEO 600, and more than 65% of devices achieve bit rates above 3.5 kbps, satisfying the 3GPP TS 22.261 requirement of 2 kbps experienced data rate. Furthermore, smaller aperture antennas, despite offering lower peak gain, are shown to improve robustness by producing wider beams, which yield more stable SNR distributions and superior minimum link availability compared to larger apertures.
Název v anglickém jazyce
Downlink Coverage and Bit Rate Performance of LEO-Based Non-Terrestrial Networks for NB-IoT
Popis výsledku anglicky
The integration of Narrowband Internet of Things (NB-IoT) with Non-Terrestrial Networks (NTNs) has emerged as a prominent enabler for global IoT connectivity in regions where terrestrial infrastructures are unavailable or impractical to deploy. Although IoT traffic is inherently uplink-oriented, performance of the downlink transmissions is equally vital for maintaining reliable system operations, yet it has so far received considerably less attention. This paper presents a comprehensive study of downlink coverage and bit rate performance in LEO-based NB-IoT NTN systems. Using simulations with realistic satellite constellation models at 600 km and 1,200 km altitudes, we evaluate minimum link availability, downlink Signal-to-Noise Ratio (SNR) distributions, and achievable physical-layer bit rates under various antenna configurations and constellation sizes. Our results demonstrate that 1,200 km constellations consistently provide stronger downlink performance than their 600km counterparts. Notably, for LEO 1200, with 60 satellites equipped with 0.4 m aperture antennas, end devices can maintain valid connections with the satellites for approximately 30% of the time-almost four times higher than for LEO 600, and more than 65% of devices achieve bit rates above 3.5 kbps, satisfying the 3GPP TS 22.261 requirement of 2 kbps experienced data rate. Furthermore, smaller aperture antennas, despite offering lower peak gain, are shown to improve robustness by producing wider beams, which yield more stable SNR distributions and superior minimum link availability compared to larger apertures.
Klasifikace
Druh
D - Stať ve sborníku
CEP obor
—
OECD FORD obor
20203 - Telecommunications
Návaznosti výsledku
Projekt
—
Návaznosti
S - Specificky vyzkum na vysokych skolach
Ostatní
Rok uplatnění
2025
Kód důvěrnosti údajů
S - Úplné a pravdivé údaje o projektu nepodléhají ochraně podle zvláštních právních předpisů
Údaje specifické pro druh výsledku
Název statě ve sborníku
In Proceedings of 2025 17th International Congress on Ultra Modern Telecommunications and Control Systems and Workshops (ICUMT)
ISBN
979-8-3315-7675-2
ISSN
—
e-ISSN
—
Počet stran výsledku
7
Strana od-do
80-86
Název nakladatele
IEEE
Místo vydání
Florence, Italy
Místo konání akce
Florencie, Itálie
Datum konání akce
3. 11. 2025
Typ akce podle státní příslušnosti
WRD - Celosvětová akce
Kód UT WoS článku
—