These companies all want sun-synchronous terminator orbits, so that they can be sunlit all the time*.
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And then we make a silly but useful assumption. We are very honest about this, the section is titled "All models are wrong, some are useful"
We say that all satellites are spheres. Obviously, this is not true. But it provides a good comparison point. And without completely detailed, perfect info about the shape and materials of every satellite in orbit, we can't actually do a better job of this, and this actually does a good job of reproducing Starlink brightnesses. So, spherical cow it is.
And then, we confirm something that Hugh Lewis posted previously (sorry for Linkedin, that's where it is https://www.linkedin.com/pulse/sun-always-shines-tv-hugh-lewis-tlkbe)
These orbits don't actually stay sunlit all the time! Unless you're above something like 1400km altitude, these sun-synchronous terminator orbits will pass through Earth's shadow at some times of year. That means your data center will have to turn off every 90 min, or have huge batteries. You can't have 24hour sunlight AND low altitude, low-latency orbits.
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A completely fucking ridiculous drawing in an FCC filing from Cowboy space (I did a thread about that last week, https://mastodon.social/@sundogplanets/117009754043091268) indicates they might have a reflecting area of 4800 m^2. WAY BIGGER than the ISS, the biggest thing ever placed in orbit, in pieces, not as one monolith. These companies are just making shit up. For comparison's sake, we just use 800m^2 for every simulation.
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And then, we confirm something that Hugh Lewis posted previously (sorry for Linkedin, that's where it is https://www.linkedin.com/pulse/sun-always-shines-tv-hugh-lewis-tlkbe)
These orbits don't actually stay sunlit all the time! Unless you're above something like 1400km altitude, these sun-synchronous terminator orbits will pass through Earth's shadow at some times of year. That means your data center will have to turn off every 90 min, or have huge batteries. You can't have 24hour sunlight AND low altitude, low-latency orbits.
@sundogplanets I read that as Huey Lewis and was wondering when he'd drifted into this field...
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And then, we confirm something that Hugh Lewis posted previously (sorry for Linkedin, that's where it is https://www.linkedin.com/pulse/sun-always-shines-tv-hugh-lewis-tlkbe)
These orbits don't actually stay sunlit all the time! Unless you're above something like 1400km altitude, these sun-synchronous terminator orbits will pass through Earth's shadow at some times of year. That means your data center will have to turn off every 90 min, or have huge batteries. You can't have 24hour sunlight AND low altitude, low-latency orbits.
Here's the future that the techbros want. Earth as a ringed planet.
What does that actually look like in the sky? Well, it depends on your latitude and the time of year. The worst time of year for sunlit Starlink satellites is summer, but due to these orbits, the worst time for sunlit sun-synchronous terminator orbits is actually the wintertime.
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Here's the future that the techbros want. Earth as a ringed planet.
What does that actually look like in the sky? Well, it depends on your latitude and the time of year. The worst time of year for sunlit Starlink satellites is summer, but due to these orbits, the worst time for sunlit sun-synchronous terminator orbits is actually the wintertime.
And then there are a bunch of horrifying sky diagrams. Please take a look at the paper if you want to see those! I will share the extra movies here.
First, Cowboy "Stampede" (my goodness I hate these names), a single ring. This is the view from 30N on the winter solstice. You can even see in the movie how part of the ring is not sunlit. There is also a histogram showing the brightness of satellites and stars: for a lot of the time the ring is up, there are more bright sats than stars.
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And then there are a bunch of horrifying sky diagrams. Please take a look at the paper if you want to see those! I will share the extra movies here.
First, Cowboy "Stampede" (my goodness I hate these names), a single ring. This is the view from 30N on the winter solstice. You can even see in the movie how part of the ring is not sunlit. There is also a histogram showing the brightness of satellites and stars: for a lot of the time the ring is up, there are more bright sats than stars.
Now Blue Origin's "Sunrise" which has the X-ring configurations. Here's from 30N on the winter solstice.
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Now Blue Origin's "Sunrise" which has the X-ring configurations. Here's from 30N on the winter solstice.
From the equator, you'd see the X directly overhead at 6pm. Lovely.
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Here's the future that the techbros want. Earth as a ringed planet.
What does that actually look like in the sky? Well, it depends on your latitude and the time of year. The worst time of year for sunlit Starlink satellites is summer, but due to these orbits, the worst time for sunlit sun-synchronous terminator orbits is actually the wintertime.
Kessler Syndrome Here We Come!
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From the equator, you'd see the X directly overhead at 6pm. Lovely.
@sundogplanets and that is not even taking into consideration the damage such satellite constellations do to the atmosphere. Just the few tons of aluminum starlink is dumping into the atmosphere are already a big source of concern, 800m*m armatures raining from the sky sounds like what disaster movies are made of
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From the equator, you'd see the X directly overhead at 6pm. Lovely.
From the far north (or far south), you'd see one of the rings continuously, all through the long winter night (which could be 24 hours of darkness and near-darkness). But the satellites will keep you company! Ugh. Gross. There would be more bright satellites than bright stars, all night long.
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@sundogplanets and that is not even taking into consideration the damage such satellite constellations do to the atmosphere. Just the few tons of aluminum starlink is dumping into the atmosphere are already a big source of concern, 800m*m armatures raining from the sky sounds like what disaster movies are made of
@sundogplanets ah I see you mentioned it in the conclusion! Nice!
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From the far north (or far south), you'd see one of the rings continuously, all through the long winter night (which could be 24 hours of darkness and near-darkness). But the satellites will keep you company! Ugh. Gross. There would be more bright satellites than bright stars, all night long.
And then there's SpaceX's freaking ridiculous million satellite filing. I had to reduce the frame rate for this animation because it made my computer (and me) sad. We called this the "overalls" configuration. Giant overalls, in the sky. Anytime the megaconstellation is sunlit, there are more satellites than stars visible in the sky.
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And then there's SpaceX's freaking ridiculous million satellite filing. I had to reduce the frame rate for this animation because it made my computer (and me) sad. We called this the "overalls" configuration. Giant overalls, in the sky. Anytime the megaconstellation is sunlit, there are more satellites than stars visible in the sky.
Relatedly, Hugh Lewis just recently posted a paper showing that even by making the most conservative assumptions possible about size and orbits, and ignoring everything else that's already in orbit, all 3 of these proposed megaconstellations have so many satellites that they could cause Kessler Syndrome BY THEMSELVES https://arxiv.org/pdf/2607.29644
So, the good news is that we'll never have a ring like this. The bad news is, HELLOOOO Kessler Syndrome!
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And then there's SpaceX's freaking ridiculous million satellite filing. I had to reduce the frame rate for this animation because it made my computer (and me) sad. We called this the "overalls" configuration. Giant overalls, in the sky. Anytime the megaconstellation is sunlit, there are more satellites than stars visible in the sky.
@sundogplanets Did you do the simulations for all of the constellations at once? Does the night sky remains even visible?
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Relatedly, Hugh Lewis just recently posted a paper showing that even by making the most conservative assumptions possible about size and orbits, and ignoring everything else that's already in orbit, all 3 of these proposed megaconstellations have so many satellites that they could cause Kessler Syndrome BY THEMSELVES https://arxiv.org/pdf/2607.29644
So, the good news is that we'll never have a ring like this. The bad news is, HELLOOOO Kessler Syndrome!
I'll end with my favourite sentence from our paper: "This new, anthropogenic sky feature would even be easily visible in a light-polluted city: the natural patterns of the star-filled night sky that have been a source of wonder and knowledge for all of human history will have been erased by urban light pollution and then replaced by human-made artificial patterns."
This is stupid. Stop launching satellites just because you can, techbros.
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Just thinking about this - does filling the sky with these satellites make locating/tracking large asteroids on possible collision course with earth more difficult?
@kigelia @hannorein Yes.
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Relatedly, Hugh Lewis just recently posted a paper showing that even by making the most conservative assumptions possible about size and orbits, and ignoring everything else that's already in orbit, all 3 of these proposed megaconstellations have so many satellites that they could cause Kessler Syndrome BY THEMSELVES https://arxiv.org/pdf/2607.29644
So, the good news is that we'll never have a ring like this. The bad news is, HELLOOOO Kessler Syndrome!
@sundogplanets I expect the disgusting megaconstellation CEOs will reply that of course it's all possible, and just trust them to know how and stop complaining.
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@SteveBellovin Thanks!
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Relatedly, Hugh Lewis just recently posted a paper showing that even by making the most conservative assumptions possible about size and orbits, and ignoring everything else that's already in orbit, all 3 of these proposed megaconstellations have so many satellites that they could cause Kessler Syndrome BY THEMSELVES https://arxiv.org/pdf/2607.29644
So, the good news is that we'll never have a ring like this. The bad news is, HELLOOOO Kessler Syndrome!
Did Huey Lewis share the News?
The good news is, I've read various science fiction stories and settings affected by Kessler Syndrome, and they seem fun. Let me go review them. Wait... no... oh, no...
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I'll end with my favourite sentence from our paper: "This new, anthropogenic sky feature would even be easily visible in a light-polluted city: the natural patterns of the star-filled night sky that have been a source of wonder and knowledge for all of human history will have been erased by urban light pollution and then replaced by human-made artificial patterns."
This is stupid. Stop launching satellites just because you can, techbros.
That was my thought… the glorious band of the Milky Way that most urbanites don’t even know they are missing anymore will be replaced by a bright, gaudy tech band that will shine through even the worst light pollution.
