[1] XU L G, GUO T, WU Sh H, et al. Fast extraction and reconstruction of power lines based on point cloud data features[J]. Laser Technology, 2020, 44(2): 244-249(in Chinese).
[2] SHI H Y, GUO T, WANG D, et al. Power line suspension point location method based on laser point cloud[J]. Laser Technology, 2020, 44(3): 364-370(in Chinese).
[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): 500-505(in Chinese).
[4] WU H, LIU H Y, DING G F, et al. Automatic extraction of power line laser point clouds in complex environments[J]. Laser Technology, 2020, 44(4): 115-120(in Chinese).
[5] 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).
[6] MA W F, WANG Ch, WANG J L, et al. Extraction of power lines from laser point cloud based on residual clustering method[J]. Acta Geodaetica et Cartographica Sinica, 2020, 49(7): 883-892(in Chinese).
[7] ZHAO Ch, GUO H T, LU J, et al. Airborne LiDAR point cloud cla-ssification based on deep residual network[J]. Acta Geodaetica et Cartographica Sinica, 2020, 49(7): 202-8213(in Chinese).
[8] MELZER T, BRIESE C. Extraction and modeling of power lines from als point clouds[C]//Proceedings of the 28th Workshop of Austrian Association for Pattern Recognition. Hagenberg, Austria: IEEE, 2004: 47-54.
[9] LIU Z J, LIANG J, ZHANG J X. Power lines extraction from airborne LiDAR data using spatial domain segmentation[J]. Journal of Remote Sensing, 2014, 18(01): 65-80(in Chinese).
[10] McLAUGHLIN R A. Extracting transmission lines from airborne LiDAR data[J]. Geoscience and Remote Sensing Letters, 2006, 3(2): 222-226. doi: 10.1109/LGRS.2005.863390
[11] ZHANG J X, DUAN M Y, LIN X G, et al. Comparison and analysis of models for 3-D power line reconstruction using LiDAR point cloud[J]. Geomatics and Information Science of Wuhan University, 2017, 42(11): 68-75(in Chinese).
[12] LAI X D, DAI D C, ZHENG M, et al. Power line three-dimensional reconstruction for LiDAR point cloud data[J]. Journal of Remote Sensing, 2014, 18(6): 89-95(in Chinese).
[13] WANG Y J, LI K, LU L J. Power line classification from airborne LiDAR data via multi-scale neighborhood features[J]. Bulletin of Surveying and Mapping, 2019, 55(4): 25-29(in Chinese).
[14] ZOU X F, JIANG H. Automatic power line extraction from airborne LiDAR data in complex terrain background[J]. Applied Laser, 2019, 39(4): 696-702(in Chinese).
[15] WANG P H, XI X H, WANG Ch, et al. Study on power line fast extraction based on airborne LiDAR data[J]. Science of Surveying and Mapping, 2017, 42(2): 154-158(in Chinese).
[16] YE L, LIU Q, HU Q W. Research of power line fitting and extraction techniques based on LiDAR point cloud data[J]. Surveying and Spatial Information Technology, 2010, 33(5): 39-43(in Chinese).
[17] YANG N, QIN Zh Y, ZHU Y, et al. Object-oriented airborne LiDAR point cloud filtering method[J]. Journal of Surveying and Mapping Science and Technology, 2014, 31(2): 50-54(in Chin-ese).
[18] ZHANG X H. Theory and method of airborne LiDAR measurement technology[M]. Wuhan: Wuhan University Press, 2007: 47-54(in Chinese).
[19] ZHANG K, CHEN S C, WHITMAN D, et al. A progressive morphological filter for removing nonground measurements from airborne LIDAR data[J]. IEEE Transactions on Geoscience and Remote Sensing, 2003, 41(4): 872-882. doi: 10.1109/TGRS.2003.810682
[20] CHEN Ch, MAI X M, SONG Sh, et al. Automatic extraction of power lines from airborne laser point cloud data[J]. Geomatics and Information Science of Wuhan University, 2015, 40(12): 1600-1605(in Chinese).