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首页> 外文期刊>Journal of Applied Remote Sensing >Feature-constrained registration of building point clouds acquired by terrestrial and airborne laser scanners
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Feature-constrained registration of building point clouds acquired by terrestrial and airborne laser scanners

机译:地面和机载激光扫描仪获取的建筑物点云的特征受限配准

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摘要

Point-cloud registration is usually accomplished on the basis of several corresponding features to compute the parameters of the transformation model. However, common point features are difficult to select because airborne laser scanner (ALS) and terrestrial laser scanner (TLS) point clouds of the same object have be aligned due to the different sensing positions and sampling modes. Taking building profile features as objects, a registration method based on feature constraints is proposed here. The standard six-parameter rigid-body transformation adopted for alignment of laser scans is replaced by a two-step transformation: horizontal registration based on a two-dimensional similarity transformation and vertical registration based on a simple vertical shift. First, the feature-line and feature-plane equation parameters are obtained from both the airborne and terrestrial point clouds. Second, the plane transformation parameters are computed after projecting the extracted features onto a horizontal reference plane. Finally, the elevation transformation parameter is calculated by comparing the heights of flat features. The ALS and TLS datasets of two buildings (Shanghai Pudong International Conference Center and Shanghai Ocean Aquarium, China) were used to evaluate the robustness and accuracy. The results show that the proposed feature-constrained method works well for registration between two datasets. Five checkpoints and one overlap zone for the Pudong International Conference Center were selected to evaluate the accuracy and resulted in accuracies of 0.15 to 0.5 m in the horizontal direction and 0.20 m in the vertical direction. (C) 2014 Society of Photo-Optical Instrumentation Engineers (SPIE)
机译:点云注册通常是基于几个相应的功能来完成的,以计算转换模型的参数。但是,很难选择公共点特征,因为同一物体的机载激光扫描仪(ALS)和地面激光扫描仪(TLS)点云由于感应位置和采样模式不同而对齐。本文以建筑物轮廓特征为对象,提出了一种基于特征约束的配准方法。用于激光扫描对齐的标准六参数刚体变换由两步变换取代:基于二维相似性变换的水平配准和基于简单垂直移位的垂直配准。首先,从机载和地面点云获得特征线和特征平面方程参数。其次,在将提取的特征投影到水平参考平面上之后,计算平面转换参数。最后,通过比较平面特征的高度来计算高程变换参数。使用两座建筑物(上海浦东国际会议中心和中国上海海洋馆)的ALS和TLS数据集来评估鲁棒性和准确性。结果表明,所提出的特征约束方法对于两个数据集之间的配准效果很好。选择浦东国际会议中心的五个检查点和一个重叠区域来评估准确性,结果在水平方向的精度为0.15至0.5 m,在垂直方向的精度为0.20 m。 (C)2014年光电仪器工程师协会(SPIE)

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