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Indoor navigation using vision-based localization and augmented reality
Indoor navigation using vision-based localization and augmented reality

Hybrid calibration : a robust alternative to self-calibration - EikoSim
Hybrid calibration : a robust alternative to self-calibration - EikoSim

Detecting ArUco markers with OpenCV and Python - PyImageSearch
Detecting ArUco markers with OpenCV and Python - PyImageSearch

Two examples of ArUco markers of different sizes. | Download Scientific  Diagram
Two examples of ArUco markers of different sizes. | Download Scientific Diagram

STag: A stable fiducial marker system - ScienceDirect
STag: A stable fiducial marker system - ScienceDirect

Detecting Square Markers in Underwater Environments
Detecting Square Markers in Underwater Environments

How do ArUco markers work? - Quora
How do ArUco markers work? - Quora

Automotive Perception System Evaluation with Reference Data from a UAV's  Camera Using ArUco Markers and DCNN | SpringerLink
Automotive Perception System Evaluation with Reference Data from a UAV's Camera Using ArUco Markers and DCNN | SpringerLink

Indoor navigation using vision-based localization and augmented reality
Indoor navigation using vision-based localization and augmented reality

Electronics | Free Full-Text | Accurate Landing of Unmanned Aerial Vehicles  Using Ground Pattern Recognition
Electronics | Free Full-Text | Accurate Landing of Unmanned Aerial Vehicles Using Ground Pattern Recognition

Automatic generation and detection of highly reliable fiducial markers  under occlusion - ScienceDirect
Automatic generation and detection of highly reliable fiducial markers under occlusion - ScienceDirect

Figure 2 from STag: A Stable Fiducial Marker System | Semantic Scholar
Figure 2 from STag: A Stable Fiducial Marker System | Semantic Scholar

OpenCV: Detection of ArUco Markers
OpenCV: Detection of ArUco Markers

Fractal Markers: A New Approach for Long-Range Marker Pose Estimation Under  Occlusion
Fractal Markers: A New Approach for Long-Range Marker Pose Estimation Under Occlusion

ArUco download | SourceForge.net
ArUco download | SourceForge.net

ArUco Maker based localization and Node graph approach to mapping
ArUco Maker based localization and Node graph approach to mapping

Design, Detection, and Tracking of Customized Fiducial Markers
Design, Detection, and Tracking of Customized Fiducial Markers

Machines | Free Full-Text | Performance Analysis of Low-Cost Tracking  System for Mobile Robots
Machines | Free Full-Text | Performance Analysis of Low-Cost Tracking System for Mobile Robots

Three-D printed tracking dice with markers. Design progression from... |  Download Scientific Diagram
Three-D printed tracking dice with markers. Design progression from... | Download Scientific Diagram

Towards Transparent Markers
Towards Transparent Markers

Fractal Markers: A New Approach for Long-Range Marker Pose Estimation Under  Occlusion
Fractal Markers: A New Approach for Long-Range Marker Pose Estimation Under Occlusion

Machines | Free Full-Text | Performance Analysis of Low-Cost Tracking  System for Mobile Robots
Machines | Free Full-Text | Performance Analysis of Low-Cost Tracking System for Mobile Robots

Fiducial Marker Detection Using FPGAs
Fiducial Marker Detection Using FPGAs

Automotive Perception System Evaluation with Reference Data from a UAV's  Camera Using ArUco Markers and DCNN | SpringerLink
Automotive Perception System Evaluation with Reference Data from a UAV's Camera Using ArUco Markers and DCNN | SpringerLink

A Practical Framework for the Development of Augmented Reality Applications  by using ArUco Markers
A Practical Framework for the Development of Augmented Reality Applications by using ArUco Markers

Example of control point symbol and ArUco marker. | Download Scientific  Diagram
Example of control point symbol and ArUco marker. | Download Scientific Diagram

Automatic generation and detection of highly reliable fiducial markers  under occlusion
Automatic generation and detection of highly reliable fiducial markers under occlusion