Optimising the accuracy of a low-cost photogrammetric motion study system

被引:3
作者
Chong, AK [1 ]
机构
[1] Univ Otago, Dunedin, New Zealand
关键词
camera calibration; motion study; photogrammetry;
D O I
10.1111/j.0031-868X.2004.00288.x
中图分类号
P9 [自然地理学];
学科分类号
0705 ; 070501 ;
摘要
Generally, a low-cost image-based motion study system consists of a set of two or more video imaging cameras and a set of object space control targets. The control targets are required to provide for the computation of exterior parameters of the video frames of objects in motion. Subsequently, the computed exterior orientation parameters are used to compute the position of the motion targets. In general, the accuracy of the motion data is dependent largely on the accuracy of the 3D coordinates of the control targets, the computed camera and lens parameters and the frame rate of the camera. Obviously, it is difficult to improve the frame rate of a low-cost camera; however the other factors may be optimised analytically. Optimising the accuracy of the control targets is a straightforward process and is discussed briefly in the paper Optimising the computed camera and lens parameters was the main focus of the research. Consequently, the paper provides the detail of the developed optimising technique. The results show that an optimal principal distance and other lens parameters can be determined by analysing the error of a set of highly accurate object distances. The evaluation shows that the accuracy of the video motion study system can be improved by as much as six times or a reduction of scaling error from 1.06 to 1.01.
引用
收藏
页码:296 / 310
页数:15
相关论文
共 50 条
[21]   Photogrammetric System Accuracy Estimation by Simulation Modelling [J].
Tushev, S. ;
Sukhovilov, B. .
2017 INTERNATIONAL CONFERENCE ON INDUSTRIAL ENGINEERING, APPLICATIONS AND MANUFACTURING (ICIEAM), 2017,
[22]   Photogrammetric survey of complex geometries with low-cost software: Application to the 'G1′ temple in Myson, Vietnam [J].
Barazzetti, Luigi ;
Binda, Luigia ;
Scaioni, Marco ;
Taranto, Paolo .
JOURNAL OF CULTURAL HERITAGE, 2011, 12 (03) :253-262
[23]   Comparison the Mapping Accuracy of Construction Sites Using UAVs with Low-Cost Cameras [J].
Jeong, Hohyun ;
Ahn, Hoyong ;
Shin, Dongyoon ;
Choi, Chuluong .
KOREAN JOURNAL OF REMOTE SENSING, 2019, 35 (01) :1-13
[24]   Radial distortion in low-cost lenses: numerical study [J].
Chtchetinine, Alex .
OPTICAL ENGINEERING, 2008, 47 (02)
[25]   Assessing the Accuracy of Ortho-image using Photogrammetric Unmanned Aerial System [J].
Jeong, H. H. ;
Park, J. W. ;
Kim, J. S. ;
Choi, C. U. .
XXIII ISPRS CONGRESS, COMMISSION I, 2016, 41 (B1) :867-872
[26]   The accuracy of a river bed moulding/casting system and the effectiveness of a low-cost digital camera for recording river bed fabric [J].
Chandler, JH ;
Buffin-Bélanger, T ;
Rice, S ;
Reid, I ;
Graham, DJ .
PHOTOGRAMMETRIC RECORD, 2003, 18 (103) :209-223
[27]   Automated Low-Cost Photogrammetric Acquisition of 3D Models from Small Form-Factor Artefacts [J].
Collins, Tim ;
Woolley, Sandra I. ;
Gehlken, Erlend ;
Ch'ng, Eugene .
ELECTRONICS, 2019, 8 (12)
[28]   DIRECT LINEAR TRANSFORMATION CALIBRATION TECHNIQUE OF A LOW-COST PORTABLE 3D HUMAN MOTION ANALYSIS SYSTEM [J].
Pongmit, Kengkaj ;
Yodpijit, Nantakrit .
SURANAREE JOURNAL OF SCIENCE AND TECHNOLOGY, 2021, 28 (01)
[29]   ACTION CAMS AND LOW-COST MULTI-FREQUENCY ANTENNAS FOR GNSS ASSISTED PHOTOGRAMMETRIC APPLICATIONS WITHOUT GROUND CONTROL POINTS [J].
Morelli, L. ;
Menna, F. ;
Vitti, A. ;
Remondino, F. .
7TH INTERNATIONAL WORKSHOP LOWCOST 3D - SENSORS, ALGORITHMS, APPLICATIONS, 2022, 48-2 (W1) :171-176
[30]   A Low-cost Open-source Workflow to Generate Georeferenced 3D SfM Photogrammetric Models of Rocky Outcrops [J].
Froideval, Laurent ;
Pedoja, Kevin ;
Garestier, Franck ;
Moulon, Pierre ;
Conessa, Christophe ;
Le Bas, Xavier Pellerin ;
Traore, Kalil ;
Benoit, Laurent .
PHOTOGRAMMETRIC RECORD, 2019, 34 (168) :365-384