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Low-latency time-of-flight non-line-of-sight imaging at 5 frames per second
by
Tosi, Alberto
, Liu, Xiaochun
, Velten, Andreas
, Nam, Ji Hyun
, Brandt, Eric
, Renna, Marco
, Sifakis, Eftychios
, Bauer, Sebastian
in
639/624/1075
/ 639/624/1107/510
/ 639/766/930/2735
/ Algorithms
/ Angular resolution
/ Arrays
/ Avalanche diodes
/ Blurring
/ Detectors
/ Frames per second
/ Humanities and Social Sciences
/ Image reconstruction
/ Lasers
/ Latency
/ Light
/ Line of sight
/ Methods
/ Motion detection
/ multidisciplinary
/ Noise
/ Photon avalanches
/ Science
/ Science (multidisciplinary)
/ Sensors
/ Signal to noise ratio
2021
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Low-latency time-of-flight non-line-of-sight imaging at 5 frames per second
by
Tosi, Alberto
, Liu, Xiaochun
, Velten, Andreas
, Nam, Ji Hyun
, Brandt, Eric
, Renna, Marco
, Sifakis, Eftychios
, Bauer, Sebastian
in
639/624/1075
/ 639/624/1107/510
/ 639/766/930/2735
/ Algorithms
/ Angular resolution
/ Arrays
/ Avalanche diodes
/ Blurring
/ Detectors
/ Frames per second
/ Humanities and Social Sciences
/ Image reconstruction
/ Lasers
/ Latency
/ Light
/ Line of sight
/ Methods
/ Motion detection
/ multidisciplinary
/ Noise
/ Photon avalanches
/ Science
/ Science (multidisciplinary)
/ Sensors
/ Signal to noise ratio
2021
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Low-latency time-of-flight non-line-of-sight imaging at 5 frames per second
by
Tosi, Alberto
, Liu, Xiaochun
, Velten, Andreas
, Nam, Ji Hyun
, Brandt, Eric
, Renna, Marco
, Sifakis, Eftychios
, Bauer, Sebastian
in
639/624/1075
/ 639/624/1107/510
/ 639/766/930/2735
/ Algorithms
/ Angular resolution
/ Arrays
/ Avalanche diodes
/ Blurring
/ Detectors
/ Frames per second
/ Humanities and Social Sciences
/ Image reconstruction
/ Lasers
/ Latency
/ Light
/ Line of sight
/ Methods
/ Motion detection
/ multidisciplinary
/ Noise
/ Photon avalanches
/ Science
/ Science (multidisciplinary)
/ Sensors
/ Signal to noise ratio
2021
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Low-latency time-of-flight non-line-of-sight imaging at 5 frames per second
Journal Article
Low-latency time-of-flight non-line-of-sight imaging at 5 frames per second
2021
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Overview
Non-Line-Of-Sight (NLOS) imaging aims at recovering the 3D geometry of objects that are hidden from the direct line of sight. One major challenge with this technique is the weak available multibounce signal limiting scene size, capture speed, and reconstruction quality. To overcome this obstacle, we introduce a multipixel time-of-flight non-line-of-sight imaging method combining specifically designed Single Photon Avalanche Diode (SPAD) array detectors with a fast reconstruction algorithm that captures and reconstructs live low-latency videos of non-line-of-sight scenes with natural non-retroreflective objects. We develop a model of the signal-to-noise-ratio of non-line-of-sight imaging and use it to devise a method that reconstructs the scene such that signal-to-noise-ratio, motion blur, angular resolution, and depth resolution are all independent of scene depth suggesting that reconstruction of very large scenes may be possible.
Non-line-of-sight imaging can recover the 3D geometry of hidden objects, but is limited by weak multibounce signals. Here, the authors introduce a multipixel time-of-flight NLOS imaging approach, combining array detectors and a fast algorithm, for live reconstruction of natural nonretroreflective objects.
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