Satellite Megaconstellations Are Flooding Night Skies With Light, and Ground-Based Astronomy Is Paying the Price
Aishwarya Kapoor | Times Life Bureau | Sept 30, 2026, 07:50 IST
Satellite Megaconstellations Are Flooding Night Skies With Light, and Ground-Based Astronomy Is Paying the Price
Image credit : Times Life Bureau
Every clear night, thousands of satellites streak across the sky in tight formation, scattering light across telescope lenses that took decades to build. Ground-based astronomy is now fighting a war it did not start. The megaconstellation boom, driven by Starlink, OneWeb, and their rivals, is rewriting what professional observatories and backyard stargazing can actually see.
The Number That Changes Everything
The problem for astronomy is geometric. Satellites in low Earth orbit, typically between 340 and 1,200 kilometres up, catch sunlight long after the ground has gone dark. During twilight and the hours around it, they are bright enough to saturate the sensors on professional telescopes. A single Starlink train shortly after launch, before the satellites disperse into their operational orbits, can put 60 or more streaks across a single long-exposure image.
What a Streak Actually Costs
Compromised does not mean ruined in every case. Algorithms can flag and mask satellite trails. But masking removes real data, a trail running across a galaxy or a near-Earth asteroid's predicted path deletes the science underneath it. An asteroid that was in the masked zone is an asteroid that was not tracked. Planetary defence is not an abstract concern: the European Space Agency's Hera mission and NASA's DART impact in 2022 both depend on the kind of ground-based follow-up observation that becomes harder when the sky is busier.
The Brightness Debate, and SpaceX's Response
OneWeb, operating at a higher altitude of around 1,200 kilometres, is actually dimmer during operations but stays sunlit for longer each night because of its altitude. The trade-off is not obviously better for observatories.
India's Stake in the Dark Sky
ISRO's own scientific ambitions also intersect here. AstroSat, India's first dedicated astronomy satellite launched in 2015, observes from space and sidesteps the ground-based pollution problem. But AstroSat operates in specific wavelength bands and cannot replace wide-field optical surveys done from the ground. The argument that space telescopes solve the megaconstellation problem misreads what each instrument class actually does. Ground-based telescopes and space telescopes are not substitutes, they are complements, each covering territory the other cannot.
What Comes Next, and What Cannot Be Undone
Mitigation software is improving. The Rubin Observatory has developed a pipeline specifically to detect and mask satellite trails in real time. But software mitigation has a ceiling: if enough satellites are bright enough often enough, the masked fraction of data climbs past the point where statistical science is still valid. The sky is a shared resource that was never formally designated as one.
The constellation operators have a genuine product, broadband internet for underserved regions, including remote parts of India. That is not a trivial benefit. The tension is real, and it will not resolve by declaring one side obviously right. What is clear is that the decisions being made now, at the pace of rocket launches rather than treaty negotiations, are setting the conditions under which ground-based astronomy will operate for the next several decades. The observatories being built today will still be running when those 65,000 satellites are overhead. The astronomers designing those instruments already know they are designing around a sky that has changed.