Satellite mega-constellations create risks in Low Earth Orbit, the atmosphere and on Earth

Спутниковые мегасозвездия создают риски на низкой околоземной орбите, в атмосфере и на Земле
Aaron C. Boley, Michael Byers
2021-05-20

Low Earth Orbithigh-altitude aluminaorbital debrissatellite mega-constellationssatellite re-entry
The rapid development of mega-constellations risks multiple tragedies of the commons, including tragedies to ground-based astronomy, Earth orbit, and Earth's upper atmosphere. Moreover, the connections between the Earth and space environments are inadequately taken into account by the adoption of a consumer electronic model applied to space assets. For example, we point out that satellite re-entries from the Starlink mega-constellation alone could deposit more aluminum into Earth's upper atmosphere than what is done through meteoroids; they could thus become the dominant source of high-altitude alumina. Using simple models, we also show that untracked debris will lead to potentially dangerous on-orbit collisions on a regular basis due to the large number of satellites within mega-constellation orbital shells. The total cross-section of satellites in these constellations also greatly increases the risk of impacts due to meteoroids. De facto orbit occupation by single actors, inadequate regulatory frameworks, and the possibility of free-riding exacerbate these risks. International cooperation is urgently needed, along with a regulatory system that takes into account the effects of tens of thousands of satellites.
1
De facto occupation of orbital regions by individual actors, inadequate regulation, and free-riding amplify these risks, requiring urgent international cooperation and regulation for tens of thousands of satellites.
2
Satellite mega-constellations create interconnected risks for ground-based astronomy, Low Earth orbit, and Earth's upper atmosphere, producing multiple tragedies of the commons.
3
Simple models indicate that untracked debris may cause potentially dangerous on-orbit collisions regularly because mega-constellation shells contain very large numbers of satellites.
4
Starlink satellite re-entries could deposit more aluminum into the upper atmosphere than meteoroids, potentially becoming the dominant source of high-altitude alumina.
5
The combined satellite cross-section of mega-constellations substantially increases the risk of impacts from meteoroids.

satellite mega-constellations and their interactions with Low Earth Orbit, Earth's upper atmosphere, and ground-based astronomy

the environmental, collision, astronomical, and governance risks created by the large-scale deployment and re-entry of satellite mega-constellations

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Publication Date
2021-05-20
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Authors
Aaron C. Boley
Michael Byers
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