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Multi-View Omnidirectional Vision and Structured Light for High-Precision Mapping and Reconstruction
by
Grigorev, Maksim A.
, Zhang, Zihan
, Kholodilin, Ivan
, Guo, Qihui
, Li, Bing
in
Algorithms
/ Architecture
/ Cameras
/ computer vision
/ Design
/ Design and construction
/ environment modeling
/ Equipment and supplies
/ Imaging systems
/ Lasers
/ Localization
/ measurements
/ omnidirectional images
/ Photography, Panoramic
/ Physics
/ Robotics
/ Robots
/ Simulation
/ Testing
/ virtual omnidirectional camera model
/ Virtual reality
/ Vision systems
2025
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Multi-View Omnidirectional Vision and Structured Light for High-Precision Mapping and Reconstruction
by
Grigorev, Maksim A.
, Zhang, Zihan
, Kholodilin, Ivan
, Guo, Qihui
, Li, Bing
in
Algorithms
/ Architecture
/ Cameras
/ computer vision
/ Design
/ Design and construction
/ environment modeling
/ Equipment and supplies
/ Imaging systems
/ Lasers
/ Localization
/ measurements
/ omnidirectional images
/ Photography, Panoramic
/ Physics
/ Robotics
/ Robots
/ Simulation
/ Testing
/ virtual omnidirectional camera model
/ Virtual reality
/ Vision systems
2025
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Do you wish to request the book?
Multi-View Omnidirectional Vision and Structured Light for High-Precision Mapping and Reconstruction
by
Grigorev, Maksim A.
, Zhang, Zihan
, Kholodilin, Ivan
, Guo, Qihui
, Li, Bing
in
Algorithms
/ Architecture
/ Cameras
/ computer vision
/ Design
/ Design and construction
/ environment modeling
/ Equipment and supplies
/ Imaging systems
/ Lasers
/ Localization
/ measurements
/ omnidirectional images
/ Photography, Panoramic
/ Physics
/ Robotics
/ Robots
/ Simulation
/ Testing
/ virtual omnidirectional camera model
/ Virtual reality
/ Vision systems
2025
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Multi-View Omnidirectional Vision and Structured Light for High-Precision Mapping and Reconstruction
Journal Article
Multi-View Omnidirectional Vision and Structured Light for High-Precision Mapping and Reconstruction
2025
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Overview
Omnidirectional vision systems enable panoramic perception for autonomous navigation and large-scale mapping, but physical testbeds are costly, resource-intensive, and carry operational risks. We develop a virtual simulation platform for multi-view omnidirectional vision that supports flexible camera configuration and cross-platform data streaming for efficient processing. Building on this platform, we propose and validate a reconstruction and ranging method that fuses multi-view omnidirectional images with structured-light projection. The method achieves high-precision obstacle contour reconstruction and distance estimation without extensive physical calibration or rigid hardware setups. Experiments in simulation and the real world demonstrate distance errors within 8 mm and robust performance across diverse camera configurations, highlighting the practicality of the platform for omnidirectional vision research.
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