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

机译:具有基于时间的深度分辨率的单像素三维成像

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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.
机译:飞行时间三维成像是物体识别和遥感等应用的重要工具。传统的飞行时间三维成像系统经常使用光栅扫描激光来顺序测量场景中每个像素的范围。在这里,我们展示了一种经过改进的飞行时间三维成像系统,该系统可以使用压缩传感技术来减少采集时间,同时在整个视场上分配光学照明。我们的系统基于使用短脉冲结构照明和高速光电二极管的单像素相机,并且能够在〜〜3mm的范围内将128×128像素分辨率的三维场景重建为〜3 mm的精度。 5 m。此外,通过使用压缩采样策略,我们演示了帧率高达12 Hz的连续实时三维视频。系统硬件的简单性可以使低成本的三维成像设备能够在超出可见光谱的波长范围内精确定位。

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