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PRE-CLASSIFICATION OF POINTS AND SEGMENTATION OF URBAN OBJECTS BY SCAN LINE ANALYSIS OF AIRBORNE LIDAR DATA

机译:空气传播激光器数据扫描线分析通过​​扫描线分析分类与城市物体的分割

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Currently available laser scanners are capable of performing hundreds of thousands of range measurements per second at a range resolution of a few centimeters. Despite that increasing performance, up to now airborne LiDAR mapping has established itself only in fields of application that do not require on-line data processing. A typical example in this context is urban modeling. We want to point out some other tasks like object recognition, situation analysis and on-line change detection that have come into reach of today's LiDAR technology. Primary goal of the work presented in this paper is the on-line data preparation for subsequent analysis. We present a workflow of real-time capable filter operations to detect the ground level and distinguish between clutter and man-made objects in airborne laser scanner data of urban regions. Based on interpretation of single scan lines, straight line segments are first segmented and then connected, and the resulting surfaces are delineated by a polygon. A preliminary step is done towards fast reconstruction of buildings for rapid city-modeling, co-registration or recognition of urban structures.
机译:目前可用的激光扫描仪能够在几厘米的范围分辨率下每秒执行数百个范围测量。尽管表现越来越多,但到目前为止,Airborne Lidar映射仅在不需要在线数据处理的应用领域建立了自己。在此上下文中的典型示例是城市建模。我们希望指出其他一些任务,如对象识别,情况分析和在线变更检测,该检测已经进入今天的激光雷达技术。本文提出的工作的主要目标是随后分析的在线数据准备。我们介绍了实时功能的过滤器操作的工作流程,以检测地面水平并区分城市地区的空气激光扫描仪数据中的杂波和人造物体。基于单扫描线的解释,首先分割直线段,然后连接,并且由多边形描绘得到的表面。初步一步是为了快速重建建筑物,为快速城市建模,共同登记或城市结构的认可。

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