Emissions Assessment of Low Earth Orbit (LEO) Broadband Megaconstellations; Starlink, OneWeb and Kuiper

Fuente: arXiv
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Autori principali: Osoro, Ogutu B., Oughton, Edward J., Wilson, Andrew R., Rao, Akhil
Natura: Preprint
Pubblicazione: 2023
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author Osoro, Ogutu B.
Oughton, Edward J.
Wilson, Andrew R.
Rao, Akhil
author_facet Osoro, Ogutu B.
Oughton, Edward J.
Wilson, Andrew R.
Rao, Akhil
contents The growth of Low Earth Orbit (LEO) broadband satellite megaconstellations is rapidly increasing the number of rocket launches. While improving broadband Internet helps achieve the Sustainable Development Goals (SDGs), there are also significant environmental emissions produced from burning rocket fuels. We present sustainability analytics for phase 1 of the three main LEO constellations including Amazon Kuiper (3,236 satellites), Eutelsat Group's OneWeb (648 satellites), and SpaceX Starlink (4,425 satellites). We find that LEO megaconstellations provide substantially improved broadband speeds for rural and remote communities but are roughly 6-8 times more emissions intensive (250 kg CO2eq/subscriber/year) than comparative terrestrial 4G mobile broadband. Policy makers must carefully consider the trade-off between improving broadband Internet to further the SDGs while mitigating the growing space sector environmental footprint, particularly regarding phase 2 plans to launch an order-of-magnitude more satellites.
format Preprint
id arxiv_https___arxiv_org_abs_2309_02338
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Emissions Assessment of Low Earth Orbit (LEO) Broadband Megaconstellations; Starlink, OneWeb and Kuiper
Osoro, Ogutu B.
Oughton, Edward J.
Wilson, Andrew R.
Rao, Akhil
Earth and Planetary Astrophysics
Systems and Control
General Economics
Economics
The growth of Low Earth Orbit (LEO) broadband satellite megaconstellations is rapidly increasing the number of rocket launches. While improving broadband Internet helps achieve the Sustainable Development Goals (SDGs), there are also significant environmental emissions produced from burning rocket fuels. We present sustainability analytics for phase 1 of the three main LEO constellations including Amazon Kuiper (3,236 satellites), Eutelsat Group's OneWeb (648 satellites), and SpaceX Starlink (4,425 satellites). We find that LEO megaconstellations provide substantially improved broadband speeds for rural and remote communities but are roughly 6-8 times more emissions intensive (250 kg CO2eq/subscriber/year) than comparative terrestrial 4G mobile broadband. Policy makers must carefully consider the trade-off between improving broadband Internet to further the SDGs while mitigating the growing space sector environmental footprint, particularly regarding phase 2 plans to launch an order-of-magnitude more satellites.
title Emissions Assessment of Low Earth Orbit (LEO) Broadband Megaconstellations; Starlink, OneWeb and Kuiper
topic Earth and Planetary Astrophysics
Systems and Control
General Economics
Economics
url https://arxiv.org/abs/2309.02338