Flexible and Accurate Calibration Method for Non-Overlapping Vision Sensors Based on Distance and Reprojection Constraints

This paper addresses the problem of flexible and accurate global calibration for multiple non-overlapping vision sensors in a confined workspace. Instead of using an auxiliary calibration pattern, the proposed method uses one laser tracker and only its accessory target sphere to obtain all the 3D ca...

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Main Authors: Tao Jiang, Xu Chen, Qiang Chen, Zhe Jiang
Format: Article
Language:English
Published: MDPI AG 2019-10-01
Series:Sensors
Subjects:
Online Access:https://www.mdpi.com/1424-8220/19/21/4623
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spelling doaj-bda91451cf4e41ec9a8d481a9b0b32be2020-11-24T22:10:24ZengMDPI AGSensors1424-82202019-10-011921462310.3390/s19214623s19214623Flexible and Accurate Calibration Method for Non-Overlapping Vision Sensors Based on Distance and Reprojection ConstraintsTao Jiang0Xu Chen1Qiang Chen2Zhe Jiang3School of Automation and Electrical Engineering, University of Science and Technology Beijing, Beijing 100083, ChinaBeijing Institute of Aerospace Control Devices, Beijing 100854, ChinaBeijing Institute of Aerospace Control Devices, Beijing 100854, ChinaBeijing Institute of Aerospace Control Devices, Beijing 100854, ChinaThis paper addresses the problem of flexible and accurate global calibration for multiple non-overlapping vision sensors in a confined workspace. Instead of using an auxiliary calibration pattern, the proposed method uses one laser tracker and only its accessory target sphere to obtain all the 3D calibration points and then accomplish the initial estimation of pose between the vision sensors. Then, the 3D calibration points and the extrinsic parameters between vision sensors are further optimized via the bundle adjustment algorithm based on the distance and reprojection constraints. Experiments were conducted to validate the performance and the experimental results demonstrate that the distance error can be decreased from 3.5 mm to 0.8 mm after introducing the distance and reprojection constraints.https://www.mdpi.com/1424-8220/19/21/4623calibrationnonoverlapping vision sensorsbundle adjustment
collection DOAJ
language English
format Article
sources DOAJ
author Tao Jiang
Xu Chen
Qiang Chen
Zhe Jiang
spellingShingle Tao Jiang
Xu Chen
Qiang Chen
Zhe Jiang
Flexible and Accurate Calibration Method for Non-Overlapping Vision Sensors Based on Distance and Reprojection Constraints
Sensors
calibration
nonoverlapping vision sensors
bundle adjustment
author_facet Tao Jiang
Xu Chen
Qiang Chen
Zhe Jiang
author_sort Tao Jiang
title Flexible and Accurate Calibration Method for Non-Overlapping Vision Sensors Based on Distance and Reprojection Constraints
title_short Flexible and Accurate Calibration Method for Non-Overlapping Vision Sensors Based on Distance and Reprojection Constraints
title_full Flexible and Accurate Calibration Method for Non-Overlapping Vision Sensors Based on Distance and Reprojection Constraints
title_fullStr Flexible and Accurate Calibration Method for Non-Overlapping Vision Sensors Based on Distance and Reprojection Constraints
title_full_unstemmed Flexible and Accurate Calibration Method for Non-Overlapping Vision Sensors Based on Distance and Reprojection Constraints
title_sort flexible and accurate calibration method for non-overlapping vision sensors based on distance and reprojection constraints
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2019-10-01
description This paper addresses the problem of flexible and accurate global calibration for multiple non-overlapping vision sensors in a confined workspace. Instead of using an auxiliary calibration pattern, the proposed method uses one laser tracker and only its accessory target sphere to obtain all the 3D calibration points and then accomplish the initial estimation of pose between the vision sensors. Then, the 3D calibration points and the extrinsic parameters between vision sensors are further optimized via the bundle adjustment algorithm based on the distance and reprojection constraints. Experiments were conducted to validate the performance and the experimental results demonstrate that the distance error can be decreased from 3.5 mm to 0.8 mm after introducing the distance and reprojection constraints.
topic calibration
nonoverlapping vision sensors
bundle adjustment
url https://www.mdpi.com/1424-8220/19/21/4623
work_keys_str_mv AT taojiang flexibleandaccuratecalibrationmethodfornonoverlappingvisionsensorsbasedondistanceandreprojectionconstraints
AT xuchen flexibleandaccuratecalibrationmethodfornonoverlappingvisionsensorsbasedondistanceandreprojectionconstraints
AT qiangchen flexibleandaccuratecalibrationmethodfornonoverlappingvisionsensorsbasedondistanceandreprojectionconstraints
AT zhejiang flexibleandaccuratecalibrationmethodfornonoverlappingvisionsensorsbasedondistanceandreprojectionconstraints
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