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IROS 2013

Fast 3-D shape measurement using blink-dot projection

Conference Paper Accepted Paper Artificial Intelligence · Robotics

Abstract

We propose a novel dot-pattern-projection three-dimensional (3-D) shape measurement method that can measure 3-D displacements of blink dots projected onto a measured object accurately even when it moves rapidly or is observed from a camera as moving rapidly. In our method, blinking dot patterns, in which each dot changes its size at different timings corresponding to its identification (ID) number, are projected from a projector at a high frame rate. 3-D shapes can be obtained without any miscorrespondence of the projected dots between frames by simultaneous tracking and identification of multiple dots projected onto a measured 3-D object in a camera view. Our method is implemented on a field-programmable gate array (FPGA)-based high-frame-rate (HFR) vision platform that can track and recognize as much as 15×15 blink-dot pattern in a 512×512 image in real time at 1000 fps, synchronized with an HFR projector. We demonstrate the performance of our system by showing real-time 3-D measurement results when our system is mounted on a parallel link manipulator as a sensing head.

Authors

Keywords

  • Cameras
  • Shape measurement
  • Optical imaging
  • Real-time systems
  • Optical sensors
  • Lenses
  • Synchronization
  • Shape Measures
  • Camera View
  • Objective View
  • Parallel Use
  • Coordinate System
  • Transformation Matrix
  • Optical Axis
  • Image Sensor
  • Projection Images
  • Structured Illumination
  • Projection Method
  • Human Hand
  • Small Dots
  • Principal Plane
  • Number Of Dots
  • Computer Mouse
  • Binary Threshold
  • Camera Head
  • Large Dots

Context

Venue
IEEE/RSJ International Conference on Intelligent Robots and Systems
Archive span
1988-2025
Indexed papers
26578
Paper id
382204623156897968
v2026.09.13