Related Experiment Video
Updated: Jan 24, 2026

Robotized Testing of Camera Positions to Determine Ideal Configuration for Stereo 3D Visualization of Open-Heart Surgery
Published on: August 12, 2021
An Indoor Positioning Approach Based on Fusion of Cameras and Infrared Sensors
Ernesto Martín-Gorostiza1, Miguel A García-Garrido2, Daniel Pizarro3
1Electronics Department, Polytechnic School, University of Alcalá, 28871 Madrid, Spain. ernesto.martin@uah.es.
Abstract:
A method for infrared and cameras sensor fusion, applied to indoor positioning in intelligent spaces, is proposed in this work. The fused position is obtained with a maximum likelihood estimator from infrared and camera independent observations. Specific models are proposed for variance propagation from infrared and camera observations (phase shifts and image respectively) to their respective position estimates and to the final fused estimation. Model simulations are compared with real measurements in a setup designed to validate the system. The difference between theoretical prediction and real measurements is between 0.4 cm (fusion) and 2.5 cm (camera), within a 95% confidence margin. The positioning precision is in the cm level (sub-cm level can be achieved at most tested positions) in a 4 × 3 m locating cell with 5 infrared detectors on the ceiling and one single camera, at distances from target up to 5 m and 7 m respectively. Due to the low cost system design and the results observed, the system is expected to be feasible and scalable to large real spaces.
More Related Videos
Related Concept Videos
Nuclear Fusion
A helium nucleus has a mass that is 0.7% less than that of four hydrogen nuclei; this lost mass is converted into energy during the fusion. This reaction produces about...
Position of Equilibrium in Acid-Base Reactions
Position-effect Variegation
Position and Displacement
Serial Position Effect
Tagging and Fusion Proteins

