The Overviews of Application of Three-Dimensional LiDar Technology in Operation and Maintenance of Overhead Transmission Lines in China

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Abstract:

The paper briefly reviews the operational principles and commercialized conditions of airborne three-dimensional (3D) LiDar and terrestrial 3D LiDar. And then the representative functions of 3D LiDar that are developed for the operation and maintenance of overhead transmission lines (OTL) are described in detail. Besides, the problems associated with the process of applying 3D LiDar to OTL are analyzed. It is pointed out that it is necessary to make improvement to several aspects, including new functions development, standardization of application approaches and the simplification of data processing.

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Periodical:

Advanced Materials Research (Volumes 718-720)

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946-951

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July 2013

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] R. Valerie Ussyshkin, Livia Theriault, Michael Sitar, Tyler Kou, Advantages of Airborne Lidar Technology in Power Line Asset Management. 2011 International Workshop on Multi-Platform/Multi-Sensor Remote Sensing and Mapping,(2011)1-5.

DOI: 10.1109/m2rsm.2011.5697427

Google Scholar

[2] X.Zujian,W.Zhizheng,Y.Feng, Airborne Laser Radar Measurement Technology and Engineering Application Practice ,Wuhan university press ,Wuhan, 2009.

Google Scholar

[3] X.Jinjun, Z.Minwei, Status and Development of Terrestrial Laser Scanner, Bulletin of Surveying and Mapping. 1(2007)47-50.

Google Scholar

[4] Information on http: //www.fs3s.com

Google Scholar

[5] Information on http://www.optech.ca/pdf/ALTM-Orion-SpecSheet-121005-WEB.pdf

Google Scholar

[6] Information on http://www.leica-geosystems.com/downloads123/zz/airborne/ALS70/product-specification/ALS70CM_ProductSpecs_en.pdf

Google Scholar

[7] Information on http://products.rieglusa.com/item/terrestrial-scanners/0-3d-laser-scanner-with-online-waveform-processi-2/item-1023/

Google Scholar

[8] Information on http://www.optech.ca/pdf/ILRIS_LR_SpecSheet_110304_Web.pdf

Google Scholar

[9] Information on http://hds.leica-geosystems.com/common/shared/downloads/inc/downloader.asp?id=14827

Google Scholar

[10] Information on http://www.zf-usa.com/wp-content/uploads/2011/10/Imager_5010.pdf

Google Scholar

[11] Z. Xianfeng, C. Gong, L.Wei, C. Zhengfeng, Z. Kai, Current Status and Prospects of Helicopter Power Line Inspection Tour with LIDAR.Electric Power Construction, 3(2008)40-43.

Google Scholar

[12] Y. Feng, X. Zujian, Application of the Lidar Technology on Operation and Maintenance of Power Transmission Lines. Southern Power System Technology, 2(2009)62-64.

Google Scholar

[13] Z. Xiaodong, D. Yanjuan,L. Ping, Z. Yu, Airborne Lidar Technology Used in Electrical Power Line Design Project. Journal Of Yangtze River Scientific Research Institute, 1(2010)26-30.

Google Scholar

[14] M.Xiangda,L. Xinke, Airborne Mr radar technology and its application in electric power engineering.Guanxi Electric Utility, 9(2007)81-83.

Google Scholar

[15] Y. Deming,C. Fangdong,G. Xining, Z. Xuesong, Application of Helicopter Laser Scanning 3DImaging Technology in Transmission Lines.High Voltage Engineering, 3(2011)711-717.

Google Scholar

[16] X. Zujian,Y. Feng,H. Yong,et al, Application of three-dimensional Lidar Technology in Electric Power Industry.6(2008)4-6.

Google Scholar

[17] W. Xiumei, Wang Jing,G. Ling, Phase to Phase Distance Measurement Based on Terrestrial Laser Scanner. Computer Measurement &Control,1(2012)138-140.

Google Scholar