Astronomers push for global debate on giant satellite swarms
nature.com
nature.com
For the night sky and astronomy the externality is not so great in the grand scheme, but if unmitigated it does mean that there will be fewer discoveries per taxpayer dollar sent to the NSF/NASA. I'm a postdoc in astronomy and am all aboard Starlink-style networking. But it also seems fair to me that SpaceX should be the party that's responsible for treating that externality with light pollution, or else it's the same old "privatize the gains and socialize the cleanup." We've already effectively achieved this for radio astronomy by regulating protected bands in the spectrum for passive listening.
Fewer discoveries _by ground based telescopes_.
I want to make this distinction because more access to space also decreases the price of space based telescopes. A swarm half the size facing outwards would also be an incredible tool.
(I do want to note to everyone that ground based telescopes will still likely be significantly cheaper for quite some time. But still decreasing the cost of space based telescopes is a huge advantage)
But, I should mention that Blue, SpaceX, Bigelow, and Virgin are trying to create access for space. Bigelow has an expandable module[0] with the explicit purpose of building larger space stations. Bigelow is specifically trying to create a private space station[1]. All these companies are also looking at lunar habitats. So yeah, there might be a period where people are not able to look through space based telescopes with their own _physical_ eye, but we shouldn't expect that period to last that long. If you are explicitly trying to colonize space, well you have to make it cheap enough for people to... go... Yes, it'll be super expensive at first, but that's true for almost every new technology (with typically ~20 years to reduce that price).
[0] https://www.nasa.gov/content/bigelow-expandable-activity-mod...
[1] https://en.wikipedia.org/wiki/Bigelow_Commercial_Space_Stati...
Not true. Most of amateur astronomers are also astrophotographers that is affected by Starlink's light pollution. Just look up any astrophotography group, I see posts of ruined shots by satellites every day.
Article: https://spacenews.com/bigelow-aerospace-lays-off-entire-work...
There's currently no news when or if BA will resume operations. Even if they do, chances are most of their original talent has made other arrangements by now. From a staffing point of view, they'll be starting from scratch.
Isn't terrestrial astronomy sort of limited by the Earth's rotation, atmospheric distortion, cloud cover, dust, light pollution, electromagnetic storms, electromagnetic noise, and limited availability of real-estate to place telescopes?
It's also possible to build larger telescopes on the ground. It just makes more sense and cents to build on the ground than into oribit. However, something like James Webb needs to be in space due to the type of research it is doing. Also why it is getting sent so far away rather than a closer orbit like Hubble.
[0]https://i.pinimg.com/originals/96/23/15/962315f7e4d4f4191de2...
edit: also electrostatically charged, abrasive dust particles.
It seems that space based telescopes could be substantially larger than Earth based telescopes, based on not having to build a structure to support their weight then?
it is possible that the positive externalities of satellite swarms outweigh that of ground based astronomy, and they should be prioritized for the visual spectrum.
The other thing about LEO constellations is that they're not permanent. A polluted river may not clean itself up automatically after a couple of years, but LEO will. We can change our minds about the utility of LEO Internet constellations at any time. There seems no real downside to deploying them and seeing if all stakeholders can find reasonable grounds for compromise.
If you wanted to tax these mega constellations to mitigate the externality they're causing, directing 2 to 3% towards orbital telescope production/launch costs arguably would be the most immediate remedy.
It's roughly similar to suggesting a tiered membership service should upgrade all customers to the highest tier without charging any more than they did last month.
It is like adding a new customer to your license membership service. Marginal costs are zero but they add to revenue. You can then use the extra revenue to develop new features.
Yes, obviously, in this highly contrived example there are many other non-tax laws and reasons this company could never exist. But I think it still demonstrates the point that a new industry that produces new taxes is not inherently a good thing even if you limit the scope to simply government revenue.
I don't believe there is a perfect view of these things, but at least taking the tack I originally expressed is more workable than this.
I think you are making different point than in the last post. I never suggested this. I agree that new companies can theoretically cause externalities that cost the government more than their taxes.
My point is that in this case SpaceX taxes are not pre-allocated to cover government costs incurred by SpaceX. SpaceX isn't increasing the number of people on welfare, teachers, defense budget, ect. In fact, SpaceX existing saves the government huge amounts of money on launch costs.
And you're right. As I said, I don't think there is a perfect way to view these things. However I do think that viewing those taxes as pre-allocated is a reasonable easy heuristic. Otherwise every single externality has to be rather thoroughly investigated. Is it already known and accounted for? If it is not accounted for, is it intentionally not accounted for or is the externality actually entirely unforeseen? How much does the externality actually cost? How much additional revenue does the company/industry causing this externality bring in and how does it compare, etc etc etc.
Not viewing those taxes as pre-allocated to existing programs essentially leads to immediately discounting any new externality because of the sheer complexity of trying to figure out the exact dollar amounts involved. Many externalities do not even have an objective dollar cost from which to start the accounting.
Even if you wish to continue with SpaceX, how do we account for them properly? They may be saving the government money on launch costs, but they are also deriving an unusually high benefit from our public education system. I'd assume they are also putting more wear on our road system than many companies. And that's not even scratching the surface. And SpaceX isn't even the whole industry.
Much, much easier to view taxes as essentially pre-allocated first and then figure out how you want to deal with things more specifically later. At least it gives us a tractable starting point.
in a company as fast paced as SpaceX, I doubt they pay much in taxes yet.
Agreed, though, I like the idea of taxing them to subsidize space telescope construction.
The public benefits from this privately maintained system. Irrespective of who profits, this is a service that I very much want, and I'm perfectly happy if Random Corporation XYZ makes a few bucks as long as I get the service at a reasonable price.
This isn't a tragedy of the commons scenario, or a "privatize the gains" scenario. It's simply a competing use. For millennia astronomers have had near-exclusive use of the sky. I don't see why they should continue to be able to hog it all to themselves.
The idea that you own a view to infinity to me us more absurd than taxing me for breathing air, which is also a negative externality taken to extreme.
Let's put a quadrillion more times the mass in space. Let's build huge orbital rings, and take to the Galaxy. Let's get a trillion people living in space.
People in rural communities were looking for allies and groups like astronomers weren't there even though it was obviously in their interest to show up. (e.g. wireless communications period is an enemy of astronomy)
While we're wishing for things, it would have been nice for climate change if oil companies had actually transitioned to being energy companies a few decades ago in the interest of all current and future generations.
On topic: Musk behaves like Vanderbilt and Stanford in this way--he exploits vulnerabilities in the current system prior to regulators being able to address the concerns, leading to a de facto monopoly once market entry is prohibited.
Increasingly that's not the case. I really couldn't have worked for any extended period from my dad's house in Maine with marginal (at best) cell service and flaky 1Mbps ADSL down.
So getting broadband to rural locations is really not up for debate even if the method of doing so is.
Which is to say that we should really start and get them _good_ speeds now, not something that is somewhat acceptable now.
There really isn't ANYTHING I do with my current connection that wasn't predicted or prototyped in the 90s or earlier. So I'm skeptical of the claim that new uses will appear once we're all at 10GBit.
As crappy as RealPlayer became, it was impressive what it was shoving down POTS twisted pairs.
like what? this is brought up, but i'm not aware of anything waiting in the wings.
is there anything in use these days on large campuses (corporate, or academic) where the bandwidth does exist, that doesn't make sense on the broader internet?
with most folks using wifi for everything at home, how are they even going to deliver 10Gbps to a device?
That is, if you run fiber optic along the power lines that will be good to support crazy high-speeds for the next 50+ years -- with relatively small investments in the future to improve the transceivers at the ends.
If you build fixed wireless the one thing that's certain is that the hardware will be obsolete in 5-10 years and have to be "ripped and replaced".
This is why the schedule for PCIe and similar electrical buses has lurched back and forth, as at times progress seemed impossible and then somebody got patents that made the next breakthrough possible (at high price.)
Note for instance that optical PHYs run at 400 GBit/sec but 10 GBit/sec is aspirational for the home. Thus any optic fiber service you might get is two orders of magnitude away from the best possible. Contrast that to LTE, 5G, etc. which are right at the limit.
So your gigabit connection would be getting close to saturation if you can find someone to stream you 8k volumetric video at the same bitrate as physical-disk media. At streaming rates, you'd be nowhere near saturating a gigabit link.
So, yes, I happen to be an amateur amateur astrophotographer, but it was litterally the first thing I thought about. Never did I think there's some web form to fill out with this complaint. So I'm sitting here thinking that if I thought about it, surely others have as well. It's not like I'm some amazing genius that sees things others don't so let me reach out to some esoteric gov't agency that I don't even know is a thing to do.
We've also known about these issues with the much smaller number of Iridium statellites to the point there are apps/websites dedicated to tell you when you can catch an Iridium flare. We also know what the effects of GeoSync sats, Hubble, ISS, etc look like in images. This is not something new.
TL;DR: Stop victim blaming
50,000 satellites would be impossible to launch without the recent step change in the wholesale price of launch. And even 5% of that number of space based telescopes will decrease the contention for valuable instrument time enormously.
Particularly if the next generation space based telescopes used tethers or precision formation flying for extremely large simulated aperture size, we'll start getting phenomenally amazing data. (Even some of the largest ground based telescopes will be possible to compete with in space using large formations of connected satellites.)
So all of the hue and cry around Starlink is really just growing pains. It will hurt some of the science temporarily (particularly around sunrise and sunset), but in the long run, cheap launch is really what the field of astronomy needs to continue to have better and better instrumentation.
Not to mention that getting a telescope the size of the Keck telescopes into space probably won't be feasible for a long time (although without air pollution you would get similar quality with a slightly smaller telescope). And even ignoring the cost of launch space telescopes are likely more expensive due to needing to deal with the extremities of space like temperature regulation and dealing with cosmic rays (which besides interfering with the computers, also cause noise in the CCD cameras).
I work at a well funded university, and it's not true for us, either. In fact I haven't met a single astronomer who is optimistic that somehow we'll magically get enough money to replace even a small fraction of the great telescopes we currently have on the ground.
And the FCC has no rules about light pollution. Which is the reason we should have a global debate about it.
Radio astronomers did complain right away and got a sensitive part of the Ka band left unused -- it wasn't included in the reserved bands but has become important since. Very nice of Starlink to grant that request.
https://en.wikipedia.org/wiki/Amateur_astronomy#Discoveries_...
Also I'd expect having an amateur community will feed people into a stronger professional community. While not on the same scale, consider taking the same its just hobbyists approach to software dev vs just leave it to the big guys like FB/Google.
Edit: Spelling/clarity
As a sidebar/tangent, I see SpaceX/Starlink being the first company to actually get close to putting their Adams-esque customer service department on a different heavenly body than earth. "For all Starlink service requests, please visit our offices in person. Our offices are conveniently located in the Sea of Tranquility, practically visible to everyone one most nights."
SpaceX is said to be discussing making a telescope out of a dedicated Starship. To simplify the telescope, and periodically return for maintenance. Like the telescopes of NASA's Scientific Balloon Program.
Except... Starship User Guide gives a payload envelope of 8 m diameter, and "100+" metric tons to LEO. Launch cost is TBD, but $30M would be failure (similar to Falcon 9 internal cost), and $2M is said to be an aspirational goal. Which is what a balloon flight costs, for a day or so, a few tons, and couple of meters of mirror.
So 8 m to Keck's 10 m. Half the area. But with balloon speed-tape (aerospace gaffers tape) pragmatics, not Webb insanity. Although... how about a "simple" pivot-out-to-hex of 20+ m diameter?
Starship changes the constraint envelope by multiple orders of magnitude. And that's starting to be reflected in strawman project sketches. Which seem low visibility for now. But unless something goes seriously wrong, very won't be in not a long time. (Edit: removed a misleading sentence).
No need to stop at one. Build hundreds, put them in orbit around the sun and turn them into an array capable of imaging exoplanets.
Or even just a few. :) A constraint is that optical-frequency interferometry arrays need to directly combine the input light, rather than being able to sample and simply combine data, as with radio frequencies. So optical telescopes would need to be docked. But yes, if both launch and instrument costs dramatically decline, "can I have two? four? eight? more?" becomes a fun question. At a minimum, as launch and recovery becomes inexpensive, there's less point in leaving a backup instrument warehoused on the ground.
Do you have a link to some of them?
The weakest argument seems to be the one saying that having satellites in space will help even the smallest universities. It will probably be cheaper for ones with no/old telescopes to split time on one in space than build one from ground that can't find anything new anyway.
And timesharing a telescope doesn't work well for certain kinds of research. For example if you want to observe a set of object every night to watch for variability, having a ground telescope you have complete control over is probably better than trying to get the timeslot you need on a space telescope every night for however long you need.
I'm not going to try to BS my way into pretending like I'm an expert but I do find it to be a safe bet to think that in 20 years it will not be cheaper to have the world's best telescope makers come to whatever random city you are in around the world to help you set up - instead of one amazing telescope maker making 1000 on an assembly line and firing them all off
And the harm is... some long-exposure photos will have a small aberration if they don't compensate digitally. In exchange, fast Internet access continues to be limited to select areas or the extremely wealthy.
Fortunetely, that's less of a problem in the middle of the night, bu there is something else that worries me. What if far from sunrise or sunset the sattelite occludes an object you are observing, without leaving a trail? Hopefully, statistics would level that out, but with enough of these sattelites, the chances of that happening go up, and it may lead to incorrect results.
I mean imagine if you just enabled a high quality ~cell phone camera in each direction on the existing starlink array etc. Or what if starlink specified a parasite satellite slot that they sold e.g. you can put up x mini sats embedded and facing space with network and power port. It lasts as long as the node lasts, put up a lot and don't complain.
There's a ton of work being done on ordinary 1m and smaller telescopes. As you say, space has big advantages in atmospheric, temperature, sun, and weather factors that may allow a smaller orbiting telescope to do work that would require a larger terrestrial scope. I'd love to see enough scopes in space that (1) ordinary Astro 102 students could do a lab assignment to point a satellite-based telescope at an object and take an image and (2) researchers could have more frequent surveys of the sky to find transient objects.
There are solutions from lasers (photon momentum), to nets that capture debris and then add a sail to it to increase friction from the atmosphere that is still in play in low earth orbit:
I've never seen a truly dark sky full of stars until the age of 35. Not just never seeing one, not even being aware that it exists at all.
The eye-opening experience was in the Serengeti, Tanzania. Cruising the plains in a jeep some hours after sunset, to look for nocturnal animals.
Until the driver made a stop. We were told to get out, as he prepared hot chocolate, it was really freezing. Once we all had our drink, he then proceeded to turn off the engine and the jeep's lights (it had massive search lights)
Our group of 5 just stood there in complete awe, for minutes. A full 360 view with not a single light or object blocking a direct view at the darkest of skies, illuminated by millions and millions of stars. Endless.
Never before in my life have I experienced being part of the universe, I have only known it. Seeing it this directly, uncompromising, unpolluted was an absolute thrill. Further enriched with the howls of hyenas and nightly grunts of distant male lions.
The directness of the experience, feeling so close to it all, makes everything fall into place. How ancient people used it for navigation, or to count time. It is satisfactory at a very primal level.
A few years later in Colombia, we experienced it again. This time it was so clear that we could see the milky way with the naked eye.
Surely lots of people do live in rural areas, and cannot imagine this revelation. But for those living in extreme light pollution, it's like taking off a veil after decades, if ever.
Do I believe light pollution will be reduced so that we all can return to an "original" sky? No, quite the opposite. We'll have even more light pollution.
For one there are more and more areas labeled as "Sternenpark, Dark Sky Reserve" or similar, for the enabling the of experience you had, as reason.
Next, for ecological reasons, disturbing animals, insects.
Last, cost.
A sky with thousands of satellites is something the next generations will admire as much as we admire the actual one with less satellites and more planes.
There is only one night sky, and when you put satellites in it they go everywhere. The remotest-living luddite bookworm will still have to see the satellites overhead.
The better analogy you should be making is (Assuming American here) do you really miss the old growth forests and wild areas that were leveled to make room for your cities and agriculture?" And the answer is, yes obviously! That's why we have national parks. But unlike with wildlife, the sky cannot be partially conserved. It's all or nothing unless all the satellites are geosynchronous. And I guarantee they won't be.
I think these are all questions that could, and perhaps should, be asked and pondered. For screens, it's not so much the sensation but what they have enabled (i.e. the dopamine hitting notifications), though there is evidence that our brain interprets text differently, less deeply, on a screen.
Likewise, I do think light pollution is bad, and perhaps we would be better if we took steps to minimize light pollution.
Same with noise pollution. I know I read that even low levels of noise pollution can heighten things like anxiety and drive a flight or fight response constantly. I for one look forward to electric vehicles in hopes that some of the noise pollution does die down, and think it will be better for many even if they don't realize it now.
Likewise, there's also evidence that interacting via messaging is robbing us of empathy, because we never hear other people's voices and learn to interpret body language cues and cue in on how others are feeling.
They're all questions that could, and should, be discussed and not just dismissed out of hand. In some respects, I truly think the Amish and the Luddites (who weren't necessarily against technology, but how it would be used and its long term cost-benefit ratio) took the correct approach to it.
It's not resistance to change, though. It's interpreting whether the benefits of that change are worth the downsides that come with it.
That said, I'm not sure I would take the Amish lifestyle as well, but it's definitely a close choice and I think they live more intentionally and that's something to be preserved. There are quite a few tradeoffs I would take though -- dropping text messaging for phone calls, for one; changing the way our cities are lighted to decrease light pollution; and definitely decreasing noise pollution.
From what I've seen, the satellites are barely visible to the naked eye, and that mainly near the horizon. They're not going to turn the sky into a flickering mass of satellites.
Not to mention that many satellites are already visible to the naked eye in dark areas.
In the 7 years living here our LTE internet plans have literally gotten twice as expensive: with plans going from 100GB total bandwidth up/down for ~$165CAD (after tax) to 50GB total bandwidth up/down for the same price.
During that time I've seen nothing but empty promises and talk by political parties and telecoms. Apparently they're spending millions and doing something, but I haven't seen any results other than taxes going up, and data plans shrinking.
In that same time period Space-X and Starlink have literally redesigned space flight and created an entirely new telecom paradigm.
I only hope Starlink starts to offer home phone service in addition to internet to further erode the market of incumbents here in Canada.
As much as I wish everyone in the globe a beautiful unblemished view of the night sky, a couple of thoughts:
(IANAA - I am not an astronomer)
* Light pollution in cities already affects the majority of the global population.
* There are already satellites in the night sky. It seems like a slippery slope of drawing a line when it becomes a problem.
* Astronomy for cutting edge R&D/exploration already seem to be limited by terrestrial astronomy - islands in the pacific are denying access to culturally important mountain tops for new telescopes, atmospheric distortion, cloud cover, light pollution from cities
* Isn't the prospect of cheaper commercial spaceflight potentially better for research astronomy? Let's get these telescope platforms into space!
Anyway, as with everything, I suspect military control/government security considerations will end up being the overriding decision making factor governing these sorts of global mega-constellations rather than such noble and pure pursuits as preserving the nights sky.
The problem is that the alternative isn't democratically elected, can't be held accountable for what it's doing and doesn't have any incentives to consider a long-term view that considers the well-being of all citizens.
Part of what's wrong with my government is any yahoo can stop any infrastructure project or at least make it cost 10x what it should.
Light pollution from the ground already ruins this wonderful hobby (and stargazing) for so many around the world, adding sky based pollution on top of that would be truly terrible.
I recognise all the benefits these satellite constellations provide us, but at what cost?
You’re thinking too small, this constellation is part of what enables you to someday go to space yourself and have your own observatory on the dark side of the moon etc.
As a personal note, a relative was doing coastal sailing (US east coast, bahamas), and while he wanted access to the iridium network for maps and emergency contact, he couldn't afford the data rates and device costs. He settled for downloaded maps and checking in by cellphone when possible. So, if he was lost out in the crossing to the bahamas, there would have been no contact. (yes, I realise that at present, Starlink is not yet offering ability to move around with your dish, so RV and boats are out of luck for now, apart from the possibility that more towers may spring up)
That said, I agree that casual hikers doing dumb things and getting lost definitely happens. But cell phone reception is hardly a panacea. Just because you can call 911 doesn't mean that someone is going to come get you if the conditions are bad. I actually have very mixed feeling with the newish assumption a lot of people have that their cell phone will always work and that, worst case, they can just call for help.
Satellites aren't going to beat cables
Their costs are moderately higher than existing broadband right now (if you aren't rural), but in news articles I read in past as they upgrade the satellites for more simultaneous connections the goal is to have a lot more subscribers at much lower costs.
Also, for remote areas of the world it would be a choice between this and nothing else.
Even if you were sharing the starlink dish with a few thousand other households to bring the cost down to affordable for your area, you'd still have an improvement over nothing.
But they are providing a tangible benefit to people on Earth. Maybe it doesn't benefit you personally or you think the costs outweigh those benefits so it is a net negative, but let's not pretend that there is zero benefit.
I don't know the answer and yet think the way we have normally answered such cost/benefit decisions is through government. Currently, we don't have a government where people make decisions based on what's best for the planet or at even just for all of humanity. Perhaps one could argue the UN or other global agreements, but I don't think, in their current forms, they have the ultimate say.
Maybe we need an Earth Council? :-)
Really? link or something?
Blocking usability of LEO is not ideal, but blocking launches is really not the risk.
[0] https://en.wikipedia.org/wiki/Kessler_syndrome#Implications
Pricing eliminates starlink for poorer regions where it'd be needed most (by a factor of at least 10). Personally, id really rather avoid it because who in their right mind would trade eu privacy for us rules by switching to a us based isp.
Its not subjective question though, lot things (including working with the govt services) are moving online even in India. Having reasonably good internet connectivity is now a necessity.
That sounds good on paper but it does now work like that in real life, in India or the US people who live far away from metro regions, providing connectivity is not an important topic for getting votes so you wont see politicians fighting for it. So Democracy is not going to solve that.
I dont know about you but if there is a question about my survival then its not subjective to me, maybe you dont value your life but I do.
Also, this is almost exclusively about about wide angel shots. You can still do ultra long exposure closeups of various things, at worse you might need to cover the shutter for a few seconds while a satellite moves into and out of the shot but even that’s generally avoidable.
I am simply saying it’s not a major impediment for amateur Astronomy as you can time things to capture a clean picture of most objects as long as you time them so their above the horizon.
Also, if you want to aim for a mountain in long exposure all the stars are going to be smeared in the photo. If it’s short exposure their going to look like just another star.
The reality is there is real impact, but no where near as bad as many generally portrayed. Imagine some senator canceling funding for new ground based telescopes because they heard these satellites would render them useless.
My assumption is scheduling should solve most of these issues in terms of large instruments.
Amateur astrophotography?
A decent portion of exposures will have to be thrown out, and some types of sky surveys will only be possible from space.
"100% known" is overstating the situation, there's no easy-to-use API for an amateur to query location, date and time, alignment, frames, and pixels to get the location of satellites.
Amateurs with basic software - or researchers who don't have the funding/equipment/software triad - just pointing a DSLR at the sky have to manually stack their images, for these users it's far easier to use a long exposure. The other problem is that sensor thermal and atmospheric noise vs. photon signal ratio is mitigated by long exposures in a way that's not the same as stacking short-exposure images, each with their own changing contribution to noise.
Amateur astronomers are a sufficiently small niche with limited practical influence so that any society - no matter if democratic or authoritarian - would IMHO quickly decide that sacrificing the whole hobby of amateur astronomy as such would be a trivial cost to pay for even small practical gains in rural telecommunications (which affect far, far more people than amateur astronomers), otherwise it would be a tail wagging the dog. Amateur astronomers can have their voice heard - and taken into account if it's not too difficult (e.g. the changes in Starlink satellite coloring to reduce brightness is a good example) but they do not get veto rights. Their interests matter if there are no conflicts, but when multiple interests collide, the niche community will likely have to concede.
You might convince societies that certain results of astronomy are essential and should not be traded away, but if these important results can be obtained even if "researchers who don't have the funding/equipment/software" are excluded, well, then excluding them is a plausible (and even likely) option and amateur astronomers will have to just take it and tolerate satellite streaks in their pictures.
>But in the digital era, it will always be 100% known where the satellites were at a given point in time
This has little to do with the digital era, and a lot more to do with the Cold War. (and it's far from 100%)
Can you provide a citation for one or more of these estimates? The only public estimate I've come across (not that I've been looking) was under 4% for Starlink and OneWeb [1].
[1] https://spacenews.com/radio-telescope-faces-extremely-concer...
This interview goes really in depth on these issues. https://www.youtube.com/watch?v=-0w0dM_e9a8
That's not to say we should not build a observatory there - this is a good idea[0]. But it does not solve most of the issues these satellites pose.
[0] Though a space station might solve a lot of similar issues without the need to land and take off.
How much ? Surely having only 1 or 2 would require a planetary consensus, so let's say every country can have one or 2 ?
Or simpler, let's everyone who has enough money to do it ! Yay !
Coming In : "how we came to pollute the far side of the moon"
(Potential repliers please ponder the difference between "easier to deal with" and "trivial".)
Space should be open for all - nobody should be able to restrict vision. I won't be surprised if we have to use weaponry to remove these satellites in the future. Space boundaries will be a hot topic in the future.
Do you have any numbers? I don't, but in my country of 11 million people, the dictatorship got scared last week of popular protests and cut out the Internet for everybody. How I wish they didn't have that power.
- they could use fewer
- I am from US why Chinese internet shoudl affect me
China, Russia, India will also want their own constellations so I am waiting for when this happen and the hypocrisy starts.
"This is impressive, but it's crazy that we've let China beat us in the race to universal broadband. The US needs to catch up!"
The "SpaceX fanboy" mindset is about a belief that humanity has a future outside the earth. Not about jingoism. I've seen literally nobody rooting for the Chinese space station to fail, or the Chinese rovers to crash on Mars.
so, on short example,you have dudes in big cities with more shit internet then me in a village in eastern Europe so they are pushing for 10000+ of satellites to pollute the entire planet because they and their elected people are incapable of running some cables.
Sure, put internet satellites up for the people in isolated places but use the right tool for the job and use cables for the rest, you will use less satellites in the end.
Also maybe we should demand this satellites to be placed in a stable geocentrically orbit so it only affects the country of origin.
(2) Geosynchronous only works for countries on the equator. There's no such thing as a stable orbit at any orbital inclination (ie, you cannot cover Canada at all).
Is still a shit thing, because of bad infrastructure you have to pollute the sky , make many things harder for astronomers , so population needs to pay more for better software and ground telescopes AND the cherry on top the Musk fans suggest we pay him billions so he can gracefully fix the issue by lifting some telescopes into space (though I am not sure SpaceX can do this yet)
There are also huge areas of the Earth's surface that are hard to or not worth running fibre to. E.g. very remote areas or moving bodies like ships, motor homes and aircraft.
Those members of society wanting to live a more rural life will benefit directly. Those in countries without expensive infrastructure will also benefit.
Starlink presently has real-world latency that is comparable to VDSL in the best of cases. It is superior to other satellite-based networks that operate at higher altitudes, but not to terrestrial fiber optics if you compare like for like (ie, a comparison of theoretical maxima).
Obviously a ship would not be a good candidate for a fiber line. That said, many developing and/or rural communities will eventually get fiber anyway, so we as a society and as voters should push for a concerted effort to do it sooner rather than later. A good beachhead would be fiber to 5G base stations in remote areas. Latin America and Africa have surprisingly strong wireless data infrastructure. The existing market for distributing phones and wireless services (often a kiosk in a shopping center or a SIM card from a corner store) can also be used to distribute modems, no satellite dishes involved.
That’s not to say Starlink lacks utility, but it wouldn’t be my first suggestion for rural or developing areas. (For what it’s worth, I have lived in both.)
Fiber's advantage is bandwidth.
Of course, that only applies country by country and presumably leaves poorer countries SOL.
However, given that we do seem to have a good option with the tradeoff that there will be more satellites in LEO, that seems to be a reasonable tradeoff. There are already a lot of satellites in orbit, to say nothing of planes, and a lot of light pollution. So this idea that we're besmirching the virgin night sky seems... overwrought.
Yet...
As an example, one US company got in legal hot water by trying to skirt around the FCC in getting its satellites to orbit [4].
[1]. https://www.itu.int/en/plenipotentiary/2014/newsroom/Documen...
[2]. https://www.fcc.gov/general/international-bureau-satellite-d...
[3]. https://www.faa.gov/space/legislation_regulation_guidance/
[4]. https://qz.com/1503575/swarm-technologies-settles-illegal-la...
I think if this is affecting basic science it's a real concern, but if it's just a matter of making long exposures of galaxies and nebulas less pretty then I have a hard time being overly concerned about it.
We could see many of them with just eyesight when they first went up. Proper instruments are definitely going to pick that up.
When it becomes clear what such a constellation can do, no doubt it will become a strategic asset – no way the Chinese will be content to just buy access from a US company.
Militaries will be very interested – put cheap-ish sensing capabilities on those birds, or decent ones on some, and you get a pretty decent global surveillance network on top of very useful infrastructure and low-latency, possibly even quite covert global communication infra that can't be taken out with existing tech.
And maybe some of those constellations will use higher orbits and care less about the night sky, and that's it for spotting the Milky Way without a computer processing out the bright flashes. That's not a happy thought.
All of our pictures of space look like this now: https://twitter.com/StarlinkPollut1/status/12536666545606246...
A bleak visual reminder of how billionaires exploit free externalities to keep us all in a prison.
For example while in earth shadow these satellites would be dark and not visible. Only in cases where observer on dark side earth surface while satellite is at elevation still able catch the sun, would these satellite be visible?
Somewhere I read that there are two kinds of arguments or dialogue that can be made: scientific (or rational) and poetic. One must be very careful of those who insidiously offer a poetic argument in the guise of a scientific argument. I fear that's what might be happening with the arguments on this subject.
https://www.scientificamerican.com/article/spacexs-dark-sate...
Look at these absolute units: https://en.wikipedia.org/wiki/List_of_largest_optical_reflec...
1) You're talking about replacing existing capabilities.
2) It's easy to spend someone else's money.
Those terrestrial telescopes are paid for, built, and running. Finding funding for them was really hard the first time around, and do you think constellation operators will spring for the replacement costs?I'm not saying it's technically impossible to replace all of our terrestrial telescopes because some people want to make a lot of money from the commons of our night sky, but $1.5 billion is just for the launches. It doesn't include design, fabrication, assembly, testing, or contingencies.
What on earth is "commercial astronomy"? Nearly all astronomy is either publicly funded, research for public benefit, or hobbyist. Which part of that do you believe is "commercial" in any way?
That's speculative and subjective, hence the debate.
I actually disagree to some degree as well, as there are more costs associated with these constellations than just missed photo opportunities for people's hobbies. Knowing the effect a single cheap kitchen microwave can have, I worry about what these constellations may mess up with regard to physics research. Important discoveries can be delayed to the detriment of everyone, and in exchange we just get cheaper faster internet out in the boonies for a small portion of the population.
Astronomy may or may not be humanities savior on a larger timescale. I think it's worth debating if we shouldn't just accept poor connectivity in the middle of nowhere as a feature as opposed to a bug.
A single satellite from a swarm will cover much bigger area at any one time, not to mention the coverage area moves as it orbits.
Much better argument for paying infrastructure costs if coverage area is effectively "humankind".
I'm not arguing that a satellite solves the problem of remote data access generally, they definitely do. My original question was whether or not that specific use case is worth the cost to science.
They don't solve access generally, so the other threads which reference large swaths of the planet not having internet yet feel beside the point to me. The vast majority of humanity lives in densely populated areas, and therefore these satellite based systems still won't solve that problem.
So in short starlink will have no influence on available crosscontinental bandwidth.
Source: I research on optical fibre and space communication
Corner cases don’t really count as “frequent,” however.
Also with the upcoming RLVs in space repair or retrieval and redeployment might also become an option, this time much more affordable than with the Shuttle.
Space telescopes could actually be cheaper than ground telescopes if SpaceX succeeds in reducing cost of human spaceflight to their goals. Space telescopes don’t need massive structures to keep the mirror from deforming under gravity, they don’t need advanced adaptive optics to adjust for seeing, they can point almost anywhere in the sky and can observe objects day and night without weather or seasonal concerns.
The users of these constellations will not be the unconnected masses, it will be users with big pockets, military, intelligence, and large enterprise who operate in remote areas (i.e. mining and oil). Also who are the early adopters who bring down launch costs of constellations for everyone by paying a premium? I doubt starlink has the deep pockets needed. No it will be intelligence services who'd love satelitte constellations capable of near real time surveillance from LEO orbit.
Somehow nobody talks about this in their fawning over Musks latest tweets. And let's not even talk about the environmental impact of largely increases rocket launches.
It's bad enough that many people in light polluted cities can barely see major stars, never mind Andromeda or subtler constellations.
I think there is a lot of miss information out there about star link. Yes it does affect large survey telescopes but for the most part it isn’t a huge impact on the actual naked eye visible night sky. ISS & other space stations are FAR easier to see, outshining out even the brightest stars vs Starlink which can only be seen a small portion of the time with the naked eye (once in operational orbit). It has absolutely no impact on reducing visibility of Andromeda or subtle constellations.
Of course, even meeting the agreed threshold currently still renders them visible in telescopes, and that applies to amateurs as well.
I don’t think it should be surprising or considered bad that you can see objects in space with telescopes. I don’t think we should stop sending stuff into space just because it’s detectable with sensitive instruments (which doesn’t mean we shouldn’t try to find ways to make scientific observations coexist). But I can definitely see an argument for limiting naked eye visibility.
to you. Not everyone shares your values and has your priorities and preferences.
Your inabilities at distinguishing the fake from truth shouldn't take away the night sky from all of us.
Go fight the big companies instead of sitting here and talking. Start a local WISP.
Stop waiting for the billionaires to save you.
This is exactly how the rich stay rich. By dividing us and preying on the natural resources.
Nobody goes and fights BSNL in India or the local telecoms in Philippines to establish better wireless links.
This is basically moving the goalposts from one duopoly to another one soon.
For those that haven't seen the sky, go take a trip to natural park. This is akin to saying, I don't use sea water because it is salty. Let some company mine to for oil, because it is for the "greater good"
Nobody should be apologizing for a company. Companies as is cause as much harm as possible. We need better regulation to put checks in these comments and rich ass billionaires who think the world is their toy.
Flamewar rhetoric leads to less interesting discussion.
I don’t think your position is very strong. Your team isn’t very large. The vast majority of people live in super light polluted areas, light pollution that takes a way bigger bite out of the night sky than sats ever will. And they don’t seem to care. Plus you have the fact that this emerging space industry, the only part of which you seem to be able to appreciate is low earth orbit, will bring people closer to space than ever before. So who are you to deny space and astronomy enthusiasts of the future the opportunity to actually be in space and experience the stars from there?
For real. Minimal changes to the night sky especially for people (majority) who aren’t into space. Revolution in prices that cascades to space telescopes and actual space tourism and multi planetary society. have you lost your mind?
I assume your motivation is (alongside with a bunch of us), "bring people closer to space than ever before", but you have provided no evidence, that polluting low earth orbit with arguably redudant satellites is a good approach.
You seem to imply that it will lead in "revolution in prices". I too, commend SpaceX for the landing boosters, but for now it doesn't reduce the price nowhere near enough to let humanity approach the space age. Starlink comparatively, IMO does nothing.
Space tethers, anyone?
As they say - "communist until you get rich, feminist until you get married."
Etc...
What about people who live in or near cities? Those skies haven't been dark or quiet for decades or more.
Granted, these are all just speculations on my part, but I feel there's a way somehow.
But they can't even stop mass killings.
Until then the rich can send their telescopes to space. It's not like everyone else gets to go to work and not see ads and other junk.
And the primative-ness of watching space from a gravity well is depressing.