Camera relative pose estimation for visual servoing using quaternions

被引:10
作者
Fathian, Kaveh [1 ]
Jin, Jingfu [1 ]
Wee, Sung-Gil [2 ]
Lee, Dong-Ha [2 ]
Kim, Yoon-Gu [2 ]
Gans, Nicholas R. [1 ]
机构
[1] Univ Texas Dallas, Dept Elect Engn, Richardson, TX 75083 USA
[2] DGIST, Wellness Convergence Res Ctr, Daegu, South Korea
关键词
Five point algorithm; Camera pose estimation; Visual servoing; Vision based estimation; Relinearization; MOTION-ESTIMATION;
D O I
10.1016/j.robot.2018.05.014
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
We present a novel approach to estimate the rotation and translation between two camera views from a minimum of five matched points in the images. Our approach simultaneously recovers the 3D structure of the points up to a common scale factor, and is immune to a variety of problems that plague existing methods that are based on the Euclidean homography or Essential matrix. Methods based on homography only function when feature points are coplanar in 3D space. Methods based on the Essential matrix often lose accuracy as the translation between two camera views goes to zero or when points are coplanar. By recovering the rotation and translation independently using quaternions, our algorithm eschews the shortcomings of these methods. Moreover, we do not impose any constraints on the 3D configuration of the points (such as coplanar or non-coplanar constraints). Our method is particularly well-suited for Position-Based Visual Servoing (PBVS) applications. Investigations using both simulations and experiments validate the new method. Comparisons between the proposed algorithm and the existing algorithms establish that our algorithm is robust to noise. A Matlab implementation of our algorithm is available online and free. (C) 2018 Elsevier B.V. All rights reserved.
引用
收藏
页码:45 / 62
页数:18
相关论文
共 55 条
[11]   Viosual servo control - Part I: Basic approaches [J].
Chaumette, Francois ;
Hutchinson, Seth .
IEEE ROBOTICS & AUTOMATION MAGAZINE, 2006, 13 (04) :82-90
[12]  
Courtois N, 2000, LECT NOTES COMPUT SC, V1807, P392
[13]  
Demazure M., 1988, RR08582 INRIA
[14]  
Fathian K., 2018, ROBOT AUTOM LETT
[15]  
Fathian K, 2014, P AMER CONTR CONF, P103, DOI 10.1109/ACC.2014.6859364
[16]   3-D reconstruction of urban scenes from image sequences [J].
Faugeras, O ;
Robert, L ;
Laveau, S ;
Csurka, G ;
Zeller, C ;
Gauclin, C ;
Zoghlami, I .
COMPUTER VISION AND IMAGE UNDERSTANDING, 1998, 69 (03) :292-309
[17]  
Faugeras O. D., 1989, Proceedings. Workshop on Visual Motion (IEEE Cat. No.89CH2716-9), P248, DOI 10.1109/WVM.1989.47116
[18]   RANDOM SAMPLE CONSENSUS - A PARADIGM FOR MODEL-FITTING WITH APPLICATIONS TO IMAGE-ANALYSIS AND AUTOMATED CARTOGRAPHY [J].
FISCHLER, MA ;
BOLLES, RC .
COMMUNICATIONS OF THE ACM, 1981, 24 (06) :381-395
[19]  
Gans N., 2009, Encyclopedia of Complexity and Systems Science, P4751
[20]   Global Optimization through Rotation Space Search [J].
Hartley, Richard I. ;
Kahl, Fredrik .
INTERNATIONAL JOURNAL OF COMPUTER VISION, 2009, 82 (01) :64-79