Galileo satellites experiencing multiple clock failures
bbc.com
bbc.com
Its surprisingly difficult to find real, detailed data about the GPS system. The block II first production run of GPS sats that were launched around 1990 and decommissioned in at most 17 years had a design life of a pitiful 7 years and used dual Rb clock and Cs clocks. I'm not sure the modern block details are declassified. Anyway the failure rate for Galileo seems consistent with a "less than a decade design life" I'm not sure block IIIa is even finished designing yet.
People have this peculiar idea that "the gps satellite" was launched one time in the 80s and its been running ever since... not so, gosh there must have been a hundred or so launched over the last couple decades.
I have some limited experience with Rb-standards and on the ground in telco land you'll get an amazing song and dance from the mfgr about how in theory they should run for eternity but being a vacuum tube (actually conceptually closer to a fluorescent light) they do wear out and end up on ebay after a decade or so for ham radio microwave and EME operators to do peculiar things with them cheaply. Not good enough to run a data center is still stable enough to help bounce signals off the moon.
I have no experience with hydrogen standards they don't even appear on ebay in my price range. Again perhaps its normal for them to wear out, etc.
So Rb standards "should" die off on a regular basis. Possibly the biggest classified secret of the entire GPS project MIGHT be you have to massively overspec your clocks or you get an economic kill shot of spending a billion bucks (rubles, euros) on something that only runs six months LOL shoudda just licensed our technology that learned the lessons the hard way in developmental block I satellites in the mid 80s.
Actually, the first suspect is the US: https://en.wikipedia.org/wiki/Galileo_(satellite_navigation)...
Also I like how everything is now being blamed on hacking, a freaking atomic clock that was launched on top of rocket into space fails and it's Russian hackers.
Seems to be the goto scapegoat for catastrophic failures, technical or otherwise.
The only mention I see anywhere of blaming hackers (Russian or otherwise) is VLM 3 comments up from you. It's certainly not in the linked article. Am I missing something?
Out of curiosity, why does a data center need a Rb clock?
GPS needs that because at the speed of light in vacuum that corresponds to ~2cm of wavelength, which is only 2 orders of magnitude from the design accuracy of the whole system.
The reference frequency used externally for timing is the reference oscillator which typically was 5 or 10 MHz, but nowadays tends to be 100 MHz as HF electronics became better.
For an older Caesium clock, a block diagram is explained on this page: http://www.leapsecond.com/museum/hp5062c/theory.htm
{a Rb clock is very similar electronically, only you are not looking at count-rates of Cs atoms flying through your spin filter but you are observing the optical attenuation of a rubidium gas, both vary with radio-frequency waves being injected into the package. Also Cs is a primary standard and Rb is very stable - but adjustable and susceptible to extarnal magnetic fields.}
From the reference frequency, a series of synthesizers / multipliers generate the radio frequency that is relevant to the physics process. And this frequency is then modulated slightly (137 Hz label in Figure 5) so that correlation in the physics process from being too high, or too low in resonance frequency, can be observed (Figure 9, you vary between f2 and f1 137 times per second).
A good GPS steered quartz oscillator will use around 100s of loop time-constant, the time constant for the control loop in a caesium clock will be much higher.
Since the same technology and the same manufacturer is being used, it's a weird problem to have after the satellites are already in space.
After all, a global system has clear military value. In contrast the Indian system is limited in coverage to India and nearby nations.
Edited to add: also, the fact that Stuxnet was discovered would be good reason to think you wouldn't attempt this. You'd need to be bullet proof certain that it would never be discovered.
The Americans spent a decade and a lot of money on the first gen system in the 80s (we're on like the forth or fifth gen of GPS sats now) and the sabotage could be as simple as making it a classified state secret that mounting the physics package such that the electrodes are vertical causes microfractures in the physics package due to launch vehicle pogo resulting in 6 month lifetime on orbit, max. Or maybe mounting the physics package horizontally. Or it was spin stabilization that killed it or ...
Or you thought kapton would be a great plastic film for high voltage high temperature insulation for the physics package but (mumble mumble secret squirrel stuff here) as documented in classified air force memo #classified, insert finger wagging here oh no you can't get more than 6 months lifetime on orbit shouldda used teflon (or vice versa)
It could be as simple as a pdf that should have been posted to arxiv.org about some engineering peculiarity of Rb cells getting classified and buried. Maybe because it cost the US government a billion bucks to learn it the hard way back in the 80s.
Russia has GLONASS, China has BeiDOU, India IRNSS, Japan QZ
Russian GLONASS had full constellation in 1995, then during late 90s it had breakages, but was fully restored by 2011 again.
EU Galileo has full constellation planed for 2020.
Last year, the EU press spokesman for Galileo, Gilles Gantelet, declared that under the strain of American pressure, "Galileo is almost dead".
While US pressure has not killed off the Galileo project entirely, concessions made by European officials mean Galileo will now be a much weaker rival to GPS than the system they had envisioned.
https://www.theguardian.com/uk/2003/dec/08/world.internation...
Galileo will lead Europe into conflict with the US, which has security concerns about the building of a navigational network to rival its own system.
http://news.bbc.co.uk/2/hi/science/nature/1893022.stm
The United States has security worries about the development of Galileo.
Poland welcomes thousands of US troops in NATO show of force
http://www.cnn.com/2017/01/14/europe/poland-us-troops-nato-w...
As far as the fighting goes the Ukraine is negligible considering all the armed conflicts around the world.
It's probably just a mistake on the ESA's part -- space is hard.
https://en.wikipedia.org/wiki/List_of_missions_to_Mars
The idea that there's a conspiracy at work is ridiculous. We're not exactly at the "Star Trek" stage of humanity here. Landing on Mars is still risky.
"NSA/NRO sattelite parked next to major Middle-Eastern telecommunications sattelite"
I say this as someone who likely subscribes to at least 20x as many conspiracy theories (defined as the existence of one or more people conspiring) as you do.
It may be "humanity's triumph" for you and me, but there are people who couldn't care less about that - people, for whom the only relevant thing is its impact on their political and economical standing. Such people are the ones who tend to find their way to positions of power.
† Again as a disclaimer: I don't have a horse in this race and I subscribe to a ton of conspiracy theories (way more than you). This is just not one of them.
At least Galileo is a competitor, and the political/military discourse about it is still ongoing.
https://en.wikipedia.org/wiki/Galileo_(satellite_navigation)...
However by reading the description provided it do seems more likely it's due to mistakes
Because things do behave differently "on production" and tests (and launches and space) do sometimes makes things worse
Most of the maser failures (5) have occurred on the satellites that were originally sent into orbit to validate the system, whereas all three rubidium stoppages are on the spacecraft that were subsequently launched to fill out the network.
Rubidium clock failures are being seen in "operational" Galileo satellites. First operational Galileo was launched in 2011.
And, first operational Indian navigational satellite was launched in 2013. So, there's not much difference in the timeline or aging of Rubidium atomic clocks between ESA and ISRO satellites.
Anyway, ISRO will be switching to indigenous atomic clocks for next generation navigation satellites[1].
[1] http://www.thehindu.com/news/national/tamil-nadu/india-devel...
All the satellites probably use the same clock power supply, regardless of which clock they chose to put into the satellite.
That would explain why you have the Indian clocks by the same manufacturer all working, and why two completely different clock technologies (hydrogen maser and rubidium) are both failing.
If they double everything they won't make this bad idea of sharing the same power supply.
From my (completely layman) perspective once you've got a meter or so of accuracy, you've got what you need for weapons.
What's further accuracy get you that some nations are against everyone having?
With the improved positional accuracy it's a 2 meter circle vs a 1 meter circle. What tactics does a 1 meter circle enable that the 2 meter circle does not enable?
Also, DigitalGlobe only has 30 cm capability:
https://en.wikipedia.org/wiki/WorldView-4
Who is downsampling (DigitalGlobe/GeoEye was downsampling earlier 40 cm imagery for Google, to 50cm)?
The objection from the US amounted to the fact an early Galileo design would have reduced their ability to degrade satellite navigation in war zones. Later the design was changed, so the US can jam Galileo - which avoids the US objection, but makes Galileo less useful as a backup.
[1] http://www.trimble.com/Positioning-Services/Trimble-RTX.aspx
I hope that Europe eventually stops giving in to demands by the USA.
[0] https://en.wikipedia.org/wiki/Evo_Morales_grounding_incident
This has not been true since May 2000, when GPS "Selective Availability" was turned off. Civilian and military receivers have the same accuracy now.
https://www.quora.com/Is-there-any-difference-between-milita...
[1] https://en.wikipedia.org/wiki/Wide_Area_Augmentation_System
GPS is US military. They can block access to the civilian one for any reason.
But if Galileo is on, they don't have the power to block it. Unless they jam its frequency. But as they use that same frequency, it would jam GPS. So, without officially giving a reason, they forced the EU to be on a different frequency.
There is no concern with using the same frequency. The US simply wants, and got, the ability to jam Galileo.
https://en.wikipedia.org/wiki/Galileo_(satellite_navigation)...
So we have been told, but it's just a firmware update (or equivalent).
There are plenty more. My favourite: https://en.wikipedia.org/wiki/SWIFT#U.S._control_over_transa...
https://en.wikipedia.org/wiki/Galileo_(satellite_navigation)...
It's not Europes business to make it easy for the USA to wage war.
Merkel might decide that she wants nothing to do with Russia taking Estonia, Romania, and Bulgaria. This is why we need technical solutions, not political ones. Banking on Europe being nice to each other is hilariously short-sighted and ahistoric.
Note, Europeans are free to leave NATO whenever they wish if they don't like our defense posture and technical requirements. I imagine letting the Russian military loose is probably not within Europe's self-interest, so enforcing technical requirements that protect all of Europe makes sense. It leaves less room for cowardly players like Merkel to appease expansionist dictators like Putin. If anything, the US did European security a favor with this policy.
That's not true.
Some of Europe is. Austria, Cyprus, Finland, Ireland, Malta, Sweden etc aren't.
Austria, for example, participated in missions in Africa, Afghanistan, the Balkans (KFOR, etc).
You really should learn about the subject you're trying to argue about.
So I'm not quite sure what the gain is for those members as they will not survive (the US might, but they won't).
You do understand that satellites are not light bulbs right?
Jamming can shut down GPS in any range from 10M to 100,000M turning the transmitters of effectively shuts down GPS to half the globe. ]
It's like not leaving food out to avoid attracting bears. Sure, it would be nice if the bears would just not bother you in the first place. But you can't influence their behavior directly, you can only influence what you do.
The whole point of this story is that the USA wants to be able to act without Europe possibly having a say. That Europe agreed was wrong, I think.
You can take some principled stand to make some sort of abstract point nobody will understand, and have the USA shoot down your satellites in the case of war. Or you can make a small change to your design and have the USA leave them alone. I don't see why taking the second option is so terrible.
The abstract point here is akin to mutually assured destruction. It keeps peace.
Having Galileo like originally envisioned and Europe taking a robust defensive strategy w.r.t. to it's satellites would mean GPS for everybody or for nobody or war with Europe. And Europe should make sure nobody wants war with them.
No one in Europe really thinks of a war with the US as a real possibility and since the know what ICBM stands for they also know they've lost before the first shot is fired.
And then we shoot down their satellites, too. The US acting like they can do whatever they want is extremely annoying and has to end, they’re just a country, not the king of the world.
Militarily and economically the US is an empire (by definition, as its growth is tied to warfare, expansion, and dominance). Just like the British empire was before it.
For example - it has 400 major, and another 400 minor, bases (some with nuclear-ready weapon systems) stationed in foreign countries. While no foreign country has a base in the US.
With the constellations on different frequencies, European powers also have the ability to engage in localised GPS jamming while leaving Galileo available for their military.
There is already something near 1 million pieces of space junk being actively tracked to avoid possible collisions with existing space vehicles/satellites.
This space junk problem eventually reaches a point where no orbital vehicles will be able to reach, stay in, and/or pass into space.
Purposely designing your satellites in order to force them to do so in the event of a war is even more short sighted.
If American satellites were being used to guide missiles at Europe, you'd be pretty PO'd.
(I don't know enough about signal processing to know if that's a possibility or not.)
I believe there's still sources of systemic error that would affect all the signals similarly, such as atmospheric interference, so even taking (for example) the average of the reported position from all the services may not improve accuracy that much.
https://en.wikipedia.org/wiki/Error_analysis_for_the_Global_... is a good read.
So in practice having more satellites means that a good position measurement is possible more of the time.
However, I'd guess that most of the improvement in user experience comes from the higher reliability than higher accuracy. Even if the errors from all systems were completely uncorrelated (which they are not), averaging the location reported by four systems gives you at most a factor of 2 in improved accuracy. On the other hand, if your chance of being able to lock onto enough satellites (within a given number of seconds) for one system is 80%, the chance that you can lock on to at least one of the four systems becomes 99.8%.
Where can I find more information about this?
You can calculate this directly by computing the variance of a sum of independent Gaussian random variables. Can't find a great link for further reading, but someone else might be able to help you out.
I'll file this next to the formula I whip up when I want to figure out how much a trip costs based on mileage and fuel prices.
Phrasing the statement as "Think of how dumb an average person you meet on the street is. Now realize that half of all people are even more dumb than that." primes the brain to denigrate the intelligence of a random person, leading to a wrong conclusion.
Another example relates to your formula for fuel economy - some locales use distance-per-volume (miles per gallon) while others use volume-per-distance (liters per 100 km). Intuition may suggest that upgrading from a 15 mpg vehicle to a 20 mpg vehicle is comparable to going from a 30 mpg vehicle to a 35 mpg vehicle - but it's not! Using the reciprocal more accurately describes the emissions and costs related to different fuel economies over the wide range of values that you'll measure in modern vehicles: The example compares a 15.7 -> 11.6 L/100km change and a 7.8 -> 6.7 L/100km change. These units make it much easier to intuit the results.
Doing the math occasionally is a good habit to get into!
AFAIK IQ is a peculiar case because of how IQ is defined.
Of course IQ is a made up thing that we just defined to behave that way.
First: Only Navstar-GPS, GLONASS and (in near future) Galileo will have worldwide coverage. Perhaps in future (but according to http://www.navipedia.net/index.php/BeiDou_Future_and_Evoluti... not before 2020) BeiDou will also have global coverage. IRNSS only has regional coverage.
So in near future we will only have three sources (not five).
Now for the simple mathematical trick: Model the position of the three systems as normal distributed random variable with same \mu, but different \sigma (\sigma_1, \sigma_2, \sigma_3). These three sigmas have to be measured. Now a convex combination of these random variables is again normal distributed, but with different \sigma (let's call it \sigma^* ) (easy exercise or look it up). Now just compute the coefficients of the convex combination that minimize \sigma^*.
OK, you are right. This can indeed be shown.
One-chip GPS/GLONASS multiconstellation receivers have been on the market for some time. Millions of consumer units sold. Many smartphones have them.
Quad-constellation (GPS, GLONASS, Galileo, BeiDou) receiver chips have been on the market for some time.
For example: STA8090GA, It's automotive Grade GPS/Galileo/Glonass/Beidou/QZSS receiver
http://www.st.com/content/ccc/resource/technical/document/da...
With the constraints that they have (receivers not necessarily always online to receive key updates, extremely low bandwidth to work with, systems depend heavily on this information, fast locks are important) it would not surprise me if the encryption scheme has big holes in it.
On the other hand, some of these constraints can be dealt with by making receivers fall back to the unencrypted signal until they're locked long enough to get their new keys. And given that this is military, they might err on the side of security rather than accessibility. So who knows.
The problem was ultimately found to be a combination of pedals being pressed by floor mats, pedals sticking on their own, and drivers pressing the wrong pedal.
That's not to say acquiring non-RoHS components isn't made more difficult by RoHS.
http://www.militaryaerospace.com/articles/print/volume-20/is...
/r/conspiracy: #2 The CIA is downvoting this post.