It doesn't seem to mention what kind of camera you'd need to do this at the mentioned distance (15 feet). I'm assuming it's at least a couple thousand bucks, or maybe even so expensive that most professional photographers won't have it, but does anyone actually know? Or did I miss it in the article?
The video goes into a bit more detail and shows a couple of things that address your question. 1) A lot of the tests were done with a camera that costs thousands of dollars. You can see images of the camera used in one of the experiments. 2) They were able to use consumer-grade cameras to also capture sound. Even frequencies up to 5x higher than the actual 60 FPS of the captured video.
Extracting audio from visual information
21–30 of 133 posts
Re: Extracting audio from visual information
#22Earlier quoted context omitted.
So it's like if 960-row video at 60fps were actually a 57600 rows-per-second video, right? Which they can extract info from because having more rows in a still frame doesn't mean having more information (at least not linearly), i.e. in still frames with no rolling shutter, rows contain redundant vibration already extracted from previous rows. So having a rolling shutter is good for this specific application because i…
Between the time the first and last row are read, the object might've moved a little bit. So if you take a picture with your phone from the side window of a moving car, the picture will appear stretched.
Re: Extracting audio from visual information
#23Re: Extracting audio from visual information
#24And now think of how much high definition video, CCTV, and other forms of recordings already exist.. and then think about running large collections of pre-existing video through such algorithms, along with the best speech-to-text in the business. You could have a whole new Wikileaks on your hands :-)
Thankfully most CCTVs are so crappy and so low framerate, I doubt they can get much out of it. If you want to record a particular person through a window, for instance, you can get a laser microphone that catches the vibrations of the glass.
Re: Extracting audio from visual information
#25Re: Extracting audio from visual information
#26Re: Extracting audio from visual information
#27Re: Extracting audio from visual information
#28Incredible and terrifying at the same time. If they're doing this kind of stuff right now with consumer cameras, imagine how effective this technology will be in just a few decades. Privacy is fading quickly with the advent of exciting technology like this.