Single-photon light detection and ranging (LiDAR) has been widely applied to 3D imaging in challenging scenarios. However, limited signal photon counts and high noises in the collected data have posed great challenges for predicting the depth image precisely. In this paper, we propose a pixel-wise residual shrinkage network for photon-efficient imaging from high-noise data, which adaptively generates the optimal thresholds for each pixel and denoises the intermediate features by soft thresholding. Besides, redefining the optimization target as pixel-wise classification provides a sharp advantage in producing confident and accurate depth estimation when compared with existing research. Comprehensive experiments conducted on both simulated an...
Light detection and ranging systems reconstruct scene depth from time-of-flight measurements. For lo...
Active range acquisition systems such as light detection and ranging (LIDAR) and time-of-flight (TOF...
In this paper, we present a new algorithm for fast, online 3D reconstruction of dynamic scenes using...
Conventional LIDAR systems require hundreds or thousands of photon detections per pixel to form accu...
Depth profile reconstruction of a scene at low light levels using an active imaging setup has wide-r...
Abstract—Capturing depth and reflectivity images at low light levels from active illumination of a s...
Capturing depth and reflectivity images at low light levels from active illumination of a scene has ...
Light detection and ranging systems reconstruct scene depth from time-of-flight measurements. For lo...
Capturing depth and reflectivity images at low light levels from active illumination of a scene has ...
Single-photon avalanche diodes (SPAD) are powerful sensors for 3D light detection and ranging (LiDAR...
Full-waveform laser radar is an active 3D imaging framework that can be used to recover the complete...
Capturing depth and reflectivity images at low light levels from active illumination of a scene has ...
Thesis: M. Eng., Massachusetts Institute of Technology, Department of Electrical Engineering and Com...
The resolution achieved in photon-efficient active optical range imaging systems can be low due to n...
We demonstrate a compressed sensing, photon counting lidar system based on the single-pixel camera. ...
Light detection and ranging systems reconstruct scene depth from time-of-flight measurements. For lo...
Active range acquisition systems such as light detection and ranging (LIDAR) and time-of-flight (TOF...
In this paper, we present a new algorithm for fast, online 3D reconstruction of dynamic scenes using...
Conventional LIDAR systems require hundreds or thousands of photon detections per pixel to form accu...
Depth profile reconstruction of a scene at low light levels using an active imaging setup has wide-r...
Abstract—Capturing depth and reflectivity images at low light levels from active illumination of a s...
Capturing depth and reflectivity images at low light levels from active illumination of a scene has ...
Light detection and ranging systems reconstruct scene depth from time-of-flight measurements. For lo...
Capturing depth and reflectivity images at low light levels from active illumination of a scene has ...
Single-photon avalanche diodes (SPAD) are powerful sensors for 3D light detection and ranging (LiDAR...
Full-waveform laser radar is an active 3D imaging framework that can be used to recover the complete...
Capturing depth and reflectivity images at low light levels from active illumination of a scene has ...
Thesis: M. Eng., Massachusetts Institute of Technology, Department of Electrical Engineering and Com...
The resolution achieved in photon-efficient active optical range imaging systems can be low due to n...
We demonstrate a compressed sensing, photon counting lidar system based on the single-pixel camera. ...
Light detection and ranging systems reconstruct scene depth from time-of-flight measurements. For lo...
Active range acquisition systems such as light detection and ranging (LIDAR) and time-of-flight (TOF...
In this paper, we present a new algorithm for fast, online 3D reconstruction of dynamic scenes using...