Laser & Optoelectronics Progress, Volume. 57, Issue 8, 081501(2020)

Target Surface Relative Pose Correction Method in Image Type Ballastless Track Settlement

Yongzhi Min1,2、*, Weizhuo Ren1, Wei Guo1, Jia Tao1, and Jie Hu1
Author Affiliations
  • 1School of Automation and Electrical Engineering, Lanzhou Jiaotong University, Lanzhou, Gansu 730070, China
  • 2Gansu Province Artificial Intelligence and Graphic Image Processing Engineering Research Center, Lanzhou, Gansu 730070, China
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    References(22)

    [1] Li M L. Deformation monitoring and assessment technology for substructure of unballasted track on railway passenger dedicated line[J]. Engineering Science, 11, 48-59(2009).

    [2] Min Y Z, Dang J W, Zhang Z H. Online surface settlement monitoring system of image-based ballastless track[J]. Optics and Precision Engineering, 21, 1621-1627(2013).

    [3] Min Y Z, Guo W, Dang J W. Center positioning of target surface image for subgrade settlement monitoring system of high-speed rail[J]. Optics and Precision Engineering, 25, 288-296(2017).

    [4] Tan Q L, Xie C. Comparison[J]. analysis of permafrost railway subgrade settlement deformation monitoring. Applied Mechanics, Materials, 226/227/228, 1651-1654(2012).

    [7] Cao Y J, Yu G J, Li X L. Image processing and improvement of edge detection of laser spot[J]. Laser & Infrared, 46, 1160-1164(2016).

    [8] Xu S[J]. Tunnel monolithic roadbed settlement image monitoring technology based on laser collimation Chinese Railways, 2012, 84-86.

    [9] Min Y Z, Kang F, Dang J W et al. Technology of light spot center positioning of ballastless track settlement monitoring system[J]. Journal of the China Railway Society, 36, 81-85(2014).

    [10] Duan Z Y, Wang N, Zhao W Z et al. Sub-pixel edge location algorithm based on Gauss integral curved surface fitting[J]. Chinese Journal of Scientific Instrument, 38, 219-225(2017).

    [13] Fischler M A, Bolles R C. Random sample consensus: a paradigm for model fitting with applications to image analysis and automated cartography[J]. Communications of the ACM, 24, 381-395(1981).

    [16] Xiao N F[M]. Intelligent robot, 36-45(2008).

    [17] Vasconcelos F, Mazomentos E, Kelly J et al. Relative pose estimation from image correspondences under a remote center of motion constraint[J]. IEEE Robotics and Automation Letters, 3, 2654-2661(2018).

    [18] Malik S, Roth G. McDonald C. Robust corner tracking for real-time augmented reality. [C]∥Proceeding Conference of Vision Interface, May 2002, Calgary, Alberta, Canada. Canada: NRC·CNRC, 399-406(2002).

    [20] Zhao L K, Zheng S Y, Wang X N et al. Rigid object position and orientation measurement based on monocular sequence[J]. Journal of Zhejiang University(Engineering Science), 52, 2372-2381(2018).

    [21] Miao X K, Zhu F, Hao Y M et al. A new pose estimation method based on uncertainty-weighted errors of the feature points[J]. Journal of Optoelectronics·Laser, 23, 1348-1355(2012).

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    Yongzhi Min, Weizhuo Ren, Wei Guo, Jia Tao, Jie Hu. Target Surface Relative Pose Correction Method in Image Type Ballastless Track Settlement[J]. Laser & Optoelectronics Progress, 2020, 57(8): 081501

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    Paper Information

    Category: Machine Vision

    Received: Aug. 23, 2019

    Accepted: Sep. 16, 2019

    Published Online: Apr. 3, 2020

    The Author Email: Yongzhi Min (minyongzhi@mail.lzjtu.cn)

    DOI:10.3788/LOP57.081501

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