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Signal Separation Coding for Robust Depth Imaging Based on Structured Light

Conference Paper Structural Light Artificial Intelligence · Robotics

Abstract

This paper presents an original approach to coding the light patterns for robust depth imaging based on structured light. We have discovered that the degradation of precision and robustness, seen in most conventional approaches to structured light, comes mainly from the overlapping of multiple codes in the signal received at a camera pixel, where the overlapped codes are from the neighbouring and/or, even, distant pixels of the projecting mirror array. Considering the criticality of separating the overlapped codes to precision and robustness, we propose a novel signal separation code, referred to here as “Hierarchical Orthogonal Code (HOC), ” for depth imaging. HOC provides not only the separation of overlapped codes, but also a robust decision on pixel correspondence with error correction based on a contextual likelihood among the sets of separated codes from neighbouring camera pixels. The experimental results have shown that the proposed HOC significantly enhances the robustness and precision in depth imaging, compared to the best known conventional approaches. The proposed approach opens a greater feasibility of applying structured light based depth imaging to a 3D modelling of cluttered workspace for home service robots.

Authors

Keywords

  • Source separation
  • Robustness
  • Image coding
  • Pixel
  • Mirrors
  • Optical arrays
  • Digital cameras
  • Layout
  • Intelligent systems
  • Intelligent structures
  • Depth Images
  • Structured Illumination
  • Signal Separation
  • Robust Image
  • Camera Pixel
  • Service Robots
  • Robust Decision
  • Decoding
  • Contextual Information
  • Light Beam
  • Surface Reflectance
  • Environmental Noise
  • Code Number
  • Binary Code
  • Magnitude Of Signal
  • Image Position
  • Code Length
  • Transition Rules
  • Coding Algorithm
  • Portion Of Surface
  • Temporal Coding
  • Spatial Coding
  • Gray Code
  • Mixture Of Signals
  • Augmented Vector
  • Unique Address
  • Confidence Index
  • Mixing Matrix
  • Pixel Array
  • Noise Sources
  • Structured Light
  • Depth Imaging
  • Orthogonal Coding

Context

Venue
IEEE International Conference on Robotics and Automation
Archive span
1984-2025
Indexed papers
30179
Paper id
1010043295599134363
v2026.09.13