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FEASIBILITY INVESTIGATION ON SINGLE PHOTON LIDAR BASED WATER SURFACE MAPPING

机译:基于单光子激光雷达水面测绘的可行性研究

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摘要

The recent advent of single photon sensitive airborne LiDAR (Light Detection And Ranging) sensors has enabled higher areal coverage performance at the price of an increased outlier rate and a lower ranging accuracy compared to conventional Multi-Photon LiDAR. Single Photon LiDAR, in particular, uses green laser light capable of penetrating clear shallow water. Although primarily designed for large area topographic mapping, the technique can also be used for mapping the water surface and shallow water bathymetry. In this contribution we investigate the capability of Single Photon LiDAR for large area mapping of water surface heights. While interface returns from conventional green-only bathymetric sensors generally suffer from water level underestimation due to the water penetration capabilities of green laser radiation, the specific questions are, if Single Photon LiDAR (i) is less affected by this well known effect due to the high receiver sensitivity and (ii) consequently delivers a higher number of water surface echoes. The topic is addressed empirically in a case study by comparing the water surface responses of Single Photon LiDAR (Navarra, Spain) and Multi-Photon Topo-Bathymetric LiDAR (Neubacher Au, Austria) for selected water bodies with a horizontal water surface (reservoirs, ponds). Although flown at different altitudes, both datasets are well comparable as they exhibit the same strip point density of ca. 14 points/m2. The expected superiority of Single Photon LiDAR over conventional green-only bathymetric LiDAR for mapping water surfaces could not be verified in this investigation. While both datasets show good agreement compared to a reference water level when aggregating points into cells of 10 × 10 m2 (mean deviations < 5 cm), higher resolution Single Photon LiDAR based water surface models (grid size 1–5 m) show a systematic water level underestimation of 5–20 cm. However, independently measured ground truth observations and simultaneous data acquisition of the same area with both techniques are necessary to verify the results.
机译:与传统的多光子激光器相比,最近单光子敏感空气传播激光雷达(光检测和测距)传感器的出现使得能够以提高的异常率和较低的测距精度来实现更高的面积覆盖性能。特别是单光子激光雷达使用能够穿透浅水的绿色激光光。虽然主要设计用于大面积地形映射,但该技术也可用于映射水面和浅水浴约定。在这一贡献中,我们研究了单光子激光器的能力,用于水面高度的大面积映射。虽然来自传统的绿色激光辐射的水渗透能力,从传统的绿色激光辐射的水位受到水位的互联网上的界面遭受,但如果单次光子激光雷达(I)受到这种众所周知的效果的影响,则具体问题是如此高接收器灵敏度和(ii)因此提供了更高数量的水表面回波。该主题通过比较单个光子激光雷达(Navarra,Spain)和多光子Topo-Bathy-Bathy-Bathy-andicsider(Neubacher Au,奥地利)的水平水体(储层,池塘)。虽然以不同的高度飞行,但两个数据集都具有很好的比较,因为它们表现出相同的CA条点密度。 14分/平方米。在该研究中,不能验证单个光子激光雷达的预期优势常规绿色碱基乙酰雷达,在这次调查中无法验证用于映射水面。虽然两种数据集与参考水位相比,当聚集点为10×10m 2(平均偏差<5cm),较高分辨率的单光子立激立线水表面模型(网格尺寸1-5米)显示出良好的协议水位低估5-20厘米。然而,有必要独立测量的地面真相观测和同时数据采集两种技术,以验证结果。

著录项

  • 作者

    G. Mandlburger; B. Jutzi;

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  • 年度 2018
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  • 原文格式 PDF
  • 正文语种 eng
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