Laser Technology, Volume. 44, Issue 3, 364(2020)

Power line suspension point location method based on laser point cloud

SHI Hongyun1、*, GUO Tao1, WANG Di2, WANG Shichun1, ZHAO Jian2, LIU Xin1, and LONG Xin2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    References(21)

    [1] [1] SHI L, GUO T, PENG Ch, et al. Segmentation of laser point cloud and safety detection of power lines[J]. Laser Technology, 2019, 43(3): 341-346(in Chinese).

    [2] [2] WU J J, LI L, FANG P k, et al. Effective organization and visualization of helicopter-based laser scanning data in power line inspection[J]. Laser Technology, 2019, 43(3): 318-323(in Chinese).

    [3] [3] WU J J, CHEN L, LI L, et al. Power line extraction and reconstruction from airborne LiDAR point cloud[J]. Laser Technology, 2019, 43(4): 500-500(in Chinese).

    [4] [4] YANG J, ZENG X J, WANG J Y, et al. Research on power equipment damage based on laser detection and big data analysis[J]. Laser Journal, 2018, 39 (12): 78-82(in Chinese).

    [5] [5] POULIOT N, RICHARD P, MONTAMBAULT S. LineScout power line robot: Characterization of a UTM-30LX LIDAR system for obstacle detection[C]//IEEE/RSJ International Conference on Intelligent Robots and Systems (IROS). New York, USA: IEEE, 2012:25-46.

    [6] [6] WANG S B, LI M X, LI H R, et al. Research on obstacle detection of transmission line corridor based on 3-D laser radar technology[J]. Electronic Technology, 2019, 32 (4): 81-84(in Chinese).

    [7] [7] DING W, HUANG X Y, TAN X Y, et al. Detecting danger vegetation in powerline corridors using airborne laser points[J]. Surveying and Mapping and Spatial Geographic Information, 2018, 41 (11): 125-128(in Chinese).

    [8] [8] CHEN L M, ZHANG W, YU H, et al. Application of UAV-based LiDAR system for power line surveys[J]. Surveying and Mapping Bulletin, 2017(s1): 176-178(in Chinese).

    [9] [9] PU Sh, WU X Q, YAN Zh L, et al. Automatic recognition of defects on transmission lines from UAV-borne laser scanning data[J]. Remote Sensing Information, 2017, 32 (4): 52-57(in Chinese).

    [10] [10] RICHARD P L, POULIOT N, MONTAMBAULT S. Introduction of a LIDAR-based obstacle detection system on the Line Scout power line robot[C]//IEEE/ASME International Conference on Advanced Intelligent Mechatronics (AIM).New York, USA:IEEE,2014:3533-3538.

    [11] [11] CHEN Ch, PENG X Y, SONG Sh, et al. Safety distance diagnosis of large scale transmission line corridor inspection based on LiDAR point cloud collected with UAV[J]. Power Grid Technology, 2017, 41(8): 2723-2730(in Chinese).

    [12] [12] GUO B, LI Q, HUANG X, et al. An improved method for power line reconstruction from point cloud data[J]. Remote Sensing, 2016, 8(1): 36.

    [13] [13] YANG Y, CHEN F X, GUO T, et al. Power line extraction using airborne LiDAR point clouds characteristics and model fitting method[J]. Journal of Chinese Academy of Sciences, 2018, 35(5): 612-616(in Chinese).

    [14] [14] SHEN X J, QIN Ch, DU Y, et al. An automatic power line extraction method from airborne light detection and ranging point cloud in complex terrain[J]. Journal of Tongji University (Natural Science Edition), 2018, 46 (7): 982-987(in Chinese).

    [15] [15] LIN X G, NING X G, XIA Sh B. A method for power line LiDAR point cloud segmentation using K-means clustering of a feature space[J]. Surveying and Mapping Science, 2016, 41(5): 60-63(in Chinese).

    [16] [16] WANG Y, CHEN Q, LIU L, et al. Supervised classification of power lines from airborne LiDAR data in urban areas[J]. Remote Sensing, 2017, 9(8):771.

    [17] [17] XU B, LIU Zh J, WANG J. Extraction and security detection of power line based on laser point cloud data[J]. Laser Journal, 2017, 38 (7): 48-51(in Chinese).

    [18] [18] DUAN M Y. 3-D power line reconstruction from airborne LiDAR point cloud[J]. Journal of Surveying and Mapping, 2016, 45 (12): 1495(in Chinese).

    [19] [19] YU J, MU Ch, FENG Y M, et al.Powerlines extraction techniques from airborne LiDAR data[J]. Journal of Wuhan University (Information Science Edition), 2011, 36(11): 1275-1279(in Chinese).

    [20] [20] YIN H Z, SUN X, NIE Zh G. An automated extraction algorithm of power lines based on airborne laser scanning data[J]. Geography and Geographic Information Science, 2012, 28 (2): 31-34(in Chinese).

    [21] [21] LIN X G, DUAN M Y, ZHANG J X, et al. A method of reconstructing 3-D powerlines from airborne LiDAR point clouds[J]. Surveying and Mapping Science, 2016, 41(1): 109-114(in Chinese).

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    SHI Hongyun, GUO Tao, WANG Di, WANG Shichun, ZHAO Jian, LIU Xin, LONG Xin. Power line suspension point location method based on laser point cloud[J]. Laser Technology, 2020, 44(3): 364

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    Paper Information

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    Received: May. 27, 2019

    Accepted: --

    Published Online: Jun. 8, 2020

    The Author Email: SHI Hongyun (360821123@qq.com)

    DOI:10.7510/jgjs.issn.1001-3806.2020.03.017

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