Stealth bomber in flight on Google Maps
151–160 of 390 posts
Re: Stealth bomber in flight on Google Maps
#152Earlier quoted context omitted.
I wonder how low it is, found the shadow of it close by 39.02468482732915, -93.6023120071418 https://www.google.com/maps/place/39%C2%B001'28.9%22N+93%C2%...
nice catch! I think the altitude could be calculated roughly if we knew the the day of the year the photo was taken.
I discovered on google earth that the image was taken May 16th.
I used this site http://shadowcalculator.eu/#/lat/39.02397754136213/lng/-93.6... to draw a fence around the bomber and defined the "structure" to be an arbitrarily tall height until the sun angle lined up.
Then I lowered the height until the sun angle touched the location of the shadow and I came to an altitude of 1100ft / 335.28m (rough height of the "structure")
Re: Stealth bomber in flight on Google Maps
#153Earlier quoted context omitted.
It actually works out to be pretty close. A satellite flying ~17k mph at 250 miles altitude would largely have the same angular displacement from the ground as a plane moving 400 mph at 31,000 feet. Most satellites fly in an easterly direction, so the question would ultimately be what the inclination of the orbit is relative to the direction of flight.
That's super interesting! I love this discussion. Would the satellite be that low though? 250 miles (400km) is still going to experience significant atmospheric drag. Fine for a cheap mass deployment like Starlink, but I'd expect an imaging satellite to be set up for a longer mission duration. Then again maybe the cost of additional mass for station-keeping is worth it for the imaging quality.
According to the image on Google maps it was taken by Maxar. Maxar appears to have a few satellites, looks like 5 in geostationary orbit (~35,700km), 3 at about 400km and 1 at about 500km.
Re: Stealth bomber in flight on Google Maps
#154Earlier quoted context omitted.
These are pushbroom linear sensors stacked up in the focal plane. The spectral channels are physically separated by larger distance than neighboring pixels in a Bayer grid. There is a time delay between each channel sweeping over the same location that gets corrected when the final imagery is aligned. The moving plane at altitude violates assumption of a static scene and exposes the scanning behavior.
For anyone wondering about what a pushboom sensor is - http://citeseerx.ist.psu.edu/viewdoc/download?doi=10.1.1.72.... Basically a 1D sensor that acquires a 2D image because the camera itself is moving. In this case, I'd imagine that there are 3 such sensors for RGB.
It makes for easier top-of-atmosphere correction, and can be useful for things other than pretty pictures.
Re: Stealth bomber in flight on Google Maps
#155Earlier quoted context omitted.
Interesting. A search for those gradients could help find all fast moving objects in the satellite images.
Now that’s an interesting idea. Anyone care to spin this up?
Re: Stealth bomber in flight on Google Maps
#156Earlier quoted context omitted.
Seems like you're right - there's one parked on (indeed) Whiteman Air Force Base right here https://goo.gl/maps/x8738SicBvtSPqmR6
that's awesome.. I thought Army bases are masked on maps.
Re: Stealth bomber in flight on Google Maps
#157The measured wingspan (using the Google Maps distance measure tool) is around 200 feet whereas the measured wingspan of a B-2 on the ground at nearby Whiteman AFB is the nominal 172 feet, so its altitude AGL is roughly 14% of the altitude of the camera plane that took the photo.
Re: Stealth bomber in flight on Google Maps
#158Interesting how the three separate R/G/B images are taken independently a few ~seconds~ milliseconds apart, with a different color filter placed over the image sensor. I assume this is to maximize resolution, since no Bayer interpolation [0] is needed to demosaic the output of a traditional image sensor that integrates the color filters onto the sensor pixels themselves. As these satellites are not intended to photog…
Interesting. A search for those gradients could help find all fast moving objects in the satellite images.
Re: Stealth bomber in flight on Google Maps
#159Earlier quoted context omitted.
These are pushbroom linear sensors stacked up in the focal plane. The spectral channels are physically separated by larger distance than neighboring pixels in a Bayer grid. There is a time delay between each channel sweeping over the same location that gets corrected when the final imagery is aligned. The moving plane at altitude violates assumption of a static scene and exposes the scanning behavior.
I think modern satellites have matrix sensors