Error Analysis and Condition Estimation of the Pyramidal Form of the Lucas-Kanade Method in Optical Flow

被引:1
|
作者
Winkler, Joab R. [1 ]
机构
[1] Univ Sheffield, Dept Comp Sci, Regent Court,211 Portobello, Sheffield S1 4DP, England
关键词
optical flow; Lucas-Kanade; condition estimation; Gaussian pyramid; PERFORMANCE;
D O I
10.3390/electronics13050812
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
Optical flow is the apparent motion of the brightness patterns in an image. The pyramidal form of the Lucas-Kanade (LK) method is frequently used for its computation but experiments have shown that the method has deficiencies. Problems arise because of numerical issues in the least squares (LS) problem minAx-b22, A is an element of Rmx2 and m >> 2, which must be solved many times. Numerical properties of the solution x0=A dagger b = (ATA)-1ATb of the LS problem are considered and it is shown that the property m >> 2 has implications for the error and stability of x0. In particular, it can be assumed that b has components that lie in the column space (range) R(A) of A, and the space that is orthogonal to R(A), from which it follows that the upper bound of the condition number of x0 is inversely proportional to cos theta, where theta is the angle between b and its component that lies in R(A). It is shown that the maximum values of this condition number, other condition numbers and the errors in the solutions of the LS problems increase as the pyramid is descended from the top level (coarsest image) to the base (finest image), such that the optical flow computed at the base of the pyramid may be computationally unreliable. The extension of these results to the problem of total least squares is addressed by considering the stability of the optical flow vectors when there are errors in A and b. Examples of the computation of the optical flow demonstrate the theoretical results, and the implications of these results for extended forms of the LK method are discussed.
引用
收藏
页数:19
相关论文
共 50 条
  • [1] Optimal Filter Estimation for Lucas-Kanade Optical Flow
    Sharmin, Nusrat
    Brad, Remus
    SENSORS, 2012, 12 (09) : 12694 - 12709
  • [2] Error Analysis for Lucas-Kanade Based Schemes
    Marquez-Valle, Patricia
    Gil, Debora
    Hernandez-Sabate, Aura
    IMAGE ANALYSIS AND RECOGNITION, PT I, 2012, 7324 : 184 - 191
  • [3] Evaluation of Lucas-Kanade based optical flow algorithm
    Liu Xiaochen
    Liu Xiaojie
    Xiong Yufeng
    Yang Jiangtao
    Wang Yubo
    Wang Linwei
    Liu Jun
    Shen Chong
    Tang Jun
    2018 IEEE CSAA GUIDANCE, NAVIGATION AND CONTROL CONFERENCE (CGNCC), 2018,
  • [4] A Motion-Based Tracking System Using the Lucas-Kanade Optical Flow Method
    Leonida, Karl Leyven
    Sevilla, Karla Veronica
    Mantises, Cyrel O.
    2022 14TH INTERNATIONAL CONFERENCE ON COMPUTER AND AUTOMATION ENGINEERING (ICCAE 2022), 2022, : 86 - 90
  • [5] Measurement of ocular torsion using iterative Lucas-Kanade optical flow method
    Lee, I. B.
    Park, K. S.
    2005 27TH ANNUAL INTERNATIONAL CONFERENCE OF THE IEEE ENGINEERING IN MEDICINE AND BIOLOGY SOCIETY, VOLS 1-7, 2005, : 6433 - 6436
  • [6] Dynamically Removing False Features in Pyramidal Lucas-Kanade Registration
    Niu, Yan
    Xu, Zhiwen
    Che, Xiangjiu
    IEEE TRANSACTIONS ON IMAGE PROCESSING, 2014, 23 (08) : 3535 - 3544
  • [7] Real time face tracking with pyramidal Lucas-Kanade feature tracker
    Kim, Ki-Sang
    Jang, Dae-Sik
    Choi, Hyung-Il
    COMPUTATIONAL SCIENCE AND ITS APPLICATIONS - ICCSA 2007, PT 1, PROCEEDINGS, 2007, 4705 : 1074 - +
  • [8] Motion vector estimation of video image by Pyramidal implementation of Lucas Kanade Optical flow
    Tamgade, Sukeshini N.
    Bora, Vibha R.
    2009 SECOND INTERNATIONAL CONFERENCE ON EMERGING TRENDS IN ENGINEERING AND TECHNOLOGY (ICETET 2009), 2009, : 1205 - +
  • [9] An Improved Visual Odometer Based on Lucas-Kanade Optical Flow and ORB Feature
    Zhong, Lingjun
    Meng, Limin
    Hou, Wei
    Huang, Li
    IEEE ACCESS, 2023, 11 : 47179 - 47186
  • [10] Stationary Obstacle Detection Using Pyramidal Lucas Kanade Optical Flow
    Hatmaja, Sukra Bambang Wahyu Tri
    Nugroho, Saptadi
    Setyawan, Iwan
    2017 15TH INTERNATIONAL CONFERENCE ON QUALITY IN RESEARCH (QIR) - INTERNATIONAL SYMPOSIUM ON ELECTRICAL AND COMPUTER ENGINEERING, 2017, : 474 - 478