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Characterization and modeling of power line corridor elements from LiDAR point clouds

机译:LiDAR点云中的电力线走廊元素的表征和建模

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摘要

As the electric companies need to assure the reliability of their services, power line management gains importance during the last years. Many of them rely on LiDAR scanning of their assets to obtain the status of their power line corridors and determine possible risks. In this paper, a novel sevenfold staged pipeline is introduced to classify pylon and wire points and model the conductors. Wire points are subdivided into three categories: shield, common conductor and chain. Pylons of two different types are taken into account: suspension and anchor. For the first case, insulator strains are also identified and separated. Wire points are segmented as individual conductors and a 3D-wise model based on the catenary equation is generated for each conductor using particle swarm optimization. Tests have been conducted on a set with 25 point cloud files to assess the accuracy and correctness of the results given by the proposed pipeline.
机译:由于电力公司需要确保其服务的可靠性,因此在最近几年中,电力线管理变得越来越重要。他们中的许多人都依靠LiDAR扫描其资产来获取其电力线通道的状态并确定可能的风险。在本文中,介绍了一种新颖的七段式管道,以对塔架和导线点进行分类,并对导体进行建模。电线点可分为三类:屏蔽层,公共导体和链条。考虑了两种不同类型的塔:悬挂和锚固。对于第一种情况,绝缘子应变也被识别和分离。导线点被分割为单独的导体,并使用粒子群优化为每个导体生成基于链式方程的3D模型。已对包含25个点云文件的集合进行了测试,以评估拟议管道给出的结果的准确性和正确性。

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