Earlier quoted context omitted.
>The military has better precision, only because they buy better hardware. That's not true. Military receivers can use the Y Code which is encrypted for military use only. There are some really fancy civilian receivers out there that can leverage Y code to a limited extent without knowing the encryption key but full accuracy is only possible on a military receiver that can decrypt and use the Y code.
is there any reason to be even more accurate than a 5 meter radius? I mean, if you are targeting a person in a building, i can't see why it has to be more accurate than that. Navigation of a drone that is less than 5 meters in size may require higher accuracy, i suppose...
Super-Accurate GPS Chips Coming to Smartphones in 2018
61–70 of 191 posts
Re: Super-Accurate GPS Chips Coming to Smartphones in 2018
#62Earlier quoted context omitted.
Things have changed since the 90s. > In May 2000, at the direction of President Bill Clinton, the U.S. government ended its use of Selective Availability in order to make GPS more responsive to civil and commercial users worldwide. > The United States has no intent to ever use Selective Availability again. The military has better precision, only because they buy better hardware. Similar hardware is used in commercial…
>The military has better precision, only because they buy better hardware. That's not true. Military receivers can use the Y Code which is encrypted for military use only. There are some really fancy civilian receivers out there that can leverage Y code to a limited extent without knowing the encryption key but full accuracy is only possible on a military receiver that can decrypt and use the Y code.
https://en.wikipedia.org/wiki/GPS_signals#Military_.28M-code...
Though I'm honestly surprised I've "known" of GPS for this long and never realized there were a variety of codes. Legacy--some still operating, modern, military, and more. I'm going to enjoy binge reading this wiki/math stuff tomorrow.
Re: Super-Accurate GPS Chips Coming to Smartphones in 2018
#63As an avid hiker and runner I'm more excited to see what this will do for things like Garmin smart watches. I run through downtown Boston a few times a week and the accuracy is very bad at times making you look like you run much farther than you do.
Re: Super-Accurate GPS Chips Coming to Smartphones in 2018
#64Earlier quoted context omitted.
Apple makes revenue from ad sales - Apple is therefore also an advertising company. They're the lesser of two evils. Still an evil, though.
> Apple makes revenue from ad sales Is that even true? They pulled the plug on mobile ad sales a year or two ago ( http://appleinsider.com/articles/16/01/18/after-abandoning-i... ), where else would they make advertising revenue? And in any case, a company who makes 99.9% of their revenue off of non-ad sales is definitely would never be categorized as an advertising company. My grocery store is paid to put crest at e…
I don't know if they're ads or not but there's also location based app suggestions too.
disclaimer: i'm a googler so glass house throwing stones etc, and of course the scale is way different
Re: Super-Accurate GPS Chips Coming to Smartphones in 2018
#65Earlier quoted context omitted.
You can see how off the trace can be here: https://i.imgur.com/eHJI8FH.jpg . You could probably do some smoothing to help fit some of this to a street but I've been on runs where I zig zag down streets just to add distance or to do hills.
Wow, that's pretty horrible, must be giving you close to twice the actual distance. I think Google Maps on my phone applies some smoothing that does this a lot better, but then it can lag for a while when I'm going sharp right in an intersection. Maybe try telling it that you're biking instead, my guess is they do more smoothing the higher speed they expect.
Re: Super-Accurate GPS Chips Coming to Smartphones in 2018
#66Earlier quoted context omitted.
>The military has better precision, only because they buy better hardware. That's not true. Military receivers can use the Y Code which is encrypted for military use only. There are some really fancy civilian receivers out there that can leverage Y code to a limited extent without knowing the encryption key but full accuracy is only possible on a military receiver that can decrypt and use the Y code.
Don't you mean... M-code? (meaning "military" code) https://en.wikipedia.org/wiki/GPS_signals#Military_.28M-code... Though I'm honestly surprised I've "known" of GPS for this long and never realized there were a variety of codes. Legacy--some still operating, modern, military, and more. I'm going to enjoy binge reading this wiki/math stuff tomorrow.
Re: Super-Accurate GPS Chips Coming to Smartphones in 2018
#67Why was "oil and gas exploration" an early adopter here? Can anyone connect the dots for me? I wouldn't expect interesting oil/gas pockets to have <5m lateral diameter, but then again I know very little about that industry.
I'm not in the oil industry. But I imagine this is a great improvement for un-anchored / thrusters positioned platforms.
Re: Super-Accurate GPS Chips Coming to Smartphones in 2018
#68Why was "oil and gas exploration" an early adopter here? Can anyone connect the dots for me? I wouldn't expect interesting oil/gas pockets to have <5m lateral diameter, but then again I know very little about that industry.
Re: Super-Accurate GPS Chips Coming to Smartphones in 2018
#69Earlier quoted context omitted.
You could probably trade accuracy of route position for accuracy of distance by averaging samples.
You can see how off the trace can be here: https://i.imgur.com/eHJI8FH.jpg . You could probably do some smoothing to help fit some of this to a street but I've been on runs where I zig zag down streets just to add distance or to do hills.
Chips with L5 should do a lot to clear that up though.
Re: Super-Accurate GPS Chips Coming to Smartphones in 2018
#70If anyone works in the field, I'd be interested in how this dual signal (L1/L5) chip interacts with the RTK/CPGPS [1] (which improves accuracy down to 1-3cm already (at the cost of using multiple GPS units)). RTK is commonly used in survey drones, and kits are available for about $1K. [1] https://en.wikipedia.org/wiki/Real_Time_Kinematic
With the new chips, Broadcom, u-blox and others are bringing to market now you are no longer dependend on a base station to get cm-level accuracy. Instead they exploit the different properties of the L1/L5 frequencies to infer stuff about e.g. the atmosphere, as the different frequencies are altered in different ways while travelling to earth[2]. The system can thus reduce its margins of errors[1] in the position calculations. So they are not "interacting" with RTK in any way. The chips are also much cheaper than your quoted $1K price tag.
Disclosure: I work for u-blox, but not an expert in GNSS calculations
[1] https://en.wikipedia.org/wiki/Error_analysis_for_the_Global_... [2] https://www.e-education.psu.edu/geog862/node/1715