1 MICRON PIXELS133-MEGAPIXEL1st and 2nd FM generation 3D halftoning100 Hue test1/f noise108 Megapixel1-bit matrix completion180 degree images
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2D to Hologram conversion2-d scale2D metrics2D and 3D video2D-plus-depth video2.5D reconstruction2D DCT2D VIEWS2.5D2D2AFC2D-TO-3D CONVERSION ARTIFACTS2-D barcodes2D printing2.5 D printing2.5D PRINTING2D/3D imaging, high performance computing, imaging systems, efficient computations and storage2x2 On-chip Lens2.5D printing2D AND 3D CONVERTIBLE DISPLAY
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3D theater program listing3D Measurement3D-shooting3D position measurement of people3D DIGITIZATION METHOD FOR OIL PAINTINGS3DLUT3D Telepresence3D Data Processing3D shape indexing and retrieval3D mesh3D display3D-color perception3D refinement3D/4D Scanning3D-LUT3D video360-degree image projection360 degrees video360-degree art exhibition3D CAMERAS3D perception360 panorama3D stereo vision3D Morphable Model360-degree images3D Object Detection3D MODEL3D face alignment3D PRINTING360-video3D depth-map360-degree video streaming3D mapping and localization360VR3D/4D Data Processing and Filtering3D video processing3D scene classification3D objects3D warping3D surface3D Saliency3D Gaussian Splatting3D optical scans3D data processing3D Range Data3D surface reproduction3D STACK3D Modeling3D TRANSFORMATION3D Imaging3D compression3D model360-degree Image3D image compression3D Digital Image Correlation3D camera3D Data Sources3D Halftoning3D adaptive halftoning3D-HEVC3D connected tube model3D scene flow estimation360-degree videos3D/4D DATA PROCESSING AND FILTERING3D Shape Indexing and Retrieval3D Video Communications3D EDUCATIONAL MATERIAL3D Tracking3D Range Data Compression360 degree images3D modelling3D capture3D scanning3D Mapping3D Printing3D recovery3D affine transformation3D Point Cloud3D printing360-degree content3D Communications3D PRINTER3D shape3D HALFTONING360 IMAGING360° video3ARRI footage3D Curvelet3D range scanning3D depth sensing3D/2D Visuals3D modeling3D RECONSTRUCTION3D rigid transformations3D Immersion3D Vision3D digital halftoning3D/4D SCANNING3D localization3D-assisted features3D-Anisotropic smoothing3DCNN3D Scene Reconstruction and Modeling3D point cloud3D human-centered technologies35MM FILM DIGITIZATION3D mesh simplification3D projector3D imaging3D audio3D ACQUISITION ARCHITECTURE360° VIDEO3D INTERACTION3D printer3D RECOVERY3D Print Appearance3D colour Digital Image Correlation3D digitization and dissemination3D localization and mapping3D range geometry3D USER INTERFACES3D TV3D cinema and TV360-Degree Video Technology3D PROFILE3d mapping3-D SHAPE RECOVERY360x3D scene capture3A ALGORITHMS360 Video3D visual representation3D-high efficiency video coding3D DISPLAY3D STIMULI3d video3D IMAGE3D encoding3D3D vision3D surface structure based halftoning3D COMPRESSION AND ENCRYPTION3D glasses3D Reconstruction3D Color Printing360-degree imaging3D CG Image3d3D Range Data Encoding3D-printing3DSR3DViewers3D communications360-degree video3D displays3D Display3D MESHES360-degree3D Gaussian splatting3DMM3D VISUALIZATION3D Compression and Encryption3D reconstruction3D MESH3D Iterative Halftoning360° STEREO PANORAMAS3D Scene Reconstruction3D Lidar3D-CNN3D and 2D3D SCENE RECONSTRUCTION AND MODELING3D SHAPE INDEXING AND RETRIEVAL3D Meshes3D SALIENCY3D Video3-T pixel3D recursive search3D-human body detection3D halftoning3D print3D Models3D Computer Graphics3D Compression3D object shape360-deg quality assessment360-DEGREE IMAGE3D shape analysis3D Quality3D Video Conferencing3D Image Processing3D RANGE IMAGING3-D RECONSTRUCTION3D MODELLING3d localization
Detecting and aligning structured signals such as point grids plays a fundamental role in many signal processing applications. Joint determination of non-grid points and estimation of non-linear spatial distortions applied to the grid is a key challenge for grid alignment. This paper
proposes a candidate solution. The method described herein starts from a small nearly regular region found in the point set and then expands the list of candidate points included in the grid. The proposed method was tested on geometrically transformed point sets and sets of locations derived
from imagery of 3D prints. It is shown that a low-complexity grid alignment method can nonetheless achieve high grid alignment accuracy.