Single-pixel three-dimensional imaging with time-based depth resolution

被引:0
作者
Ming-Jie Sun
Matthew P. Edgar
Graham M. Gibson
Baoqing Sun
Neal Radwell
Robert Lamb
Miles J. Padgett
机构
[1] Beihang University,Department of Opto
[2] SUPA,electronic Engineering
[3] School of Physics and Astronomy,undefined
[4] University of Glasgow,undefined
[5] Selex ES,undefined
来源
Nature Communications | / 7卷
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摘要
Time-of-flight three-dimensional imaging is an important tool for applications such as object recognition and remote sensing. Conventional time-of-flight three-dimensional imaging systems frequently use a raster scanned laser to measure the range of each pixel in the scene sequentially. Here we show a modified time-of-flight three-dimensional imaging system, which can use compressed sensing techniques to reduce acquisition times, whilst distributing the optical illumination over the full field of view. Our system is based on a single-pixel camera using short-pulsed structured illumination and a high-speed photodiode, and is capable of reconstructing 128 × 128-pixel resolution three-dimensional scenes to an accuracy of ∼3 mm at a range of ∼5 m. Furthermore, by using a compressive sampling strategy, we demonstrate continuous real-time three-dimensional video with a frame-rate up to 12 Hz. The simplicity of the system hardware could enable low-cost three-dimensional imaging devices for precision ranging at wavelengths beyond the visible spectrum.
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