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首页> 外文期刊>ISPRS Journal of Photogrammetry and Remote Sensing >Real-time registration of airborne laser data with sub-decimeter accuracy
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Real-time registration of airborne laser data with sub-decimeter accuracy

机译:实时记录机载激光数据,精度达到亚分米

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摘要

This paper presents a methodology for the precise registering of airborne laser data directly in flight with an accuracy that is sufficient for the majority of derived products, such as digital terrain models. We first present the strategy that integrates GPS/INS/LiDAR data for generating laser point clouds directly in flight and analyzes their accuracy. The latter requires the implementation of a functional covariance propagation on-line for all the system components (i.e. trajectory, laser, system calibration) to which influences of scanning geometry are added at the end of a flight line. The study of scanning geometry necessitates the classification of vegetation and coarse estimation of the terrain normal. This is achieved by a method that we formerly proposed for off-line quality analysis. The second part of the paper focuses on the positioning component. In high resolution scanning performed close to the terrain, the absolute accuracy of the resulting point cloud depends mainly on the quality of the trajectory which is related to the type of GPS solution (e.g. absolute positioning, DGPS, RTK). To reach sub-decimeter accuracy for the point cloud in the real-time, an RTK-GPS solution is needed. This requires the establishment of a communication link for the transmission of GPS corrections (or measurements). We analyze the usability of RTK-GPS/ALS acquired during several flights using different communication methods in the particular context of helicopter based missions. We focus mainly on the exploitation of nation-wide reference GNSS networks and confirm experimentally that the real-time registration of airborne laser data is feasible with sub-decimeter accuracy. Such quality is sufficient not only for a wide range of applications, but it also opens new opportunities for monitoring missions that require a short reaction time. Finally, we concentrate on situations when the phase and code corrections cannot be transmitted, and the quality of the differential carrier-phase positioning needs to be predicted. We validate the previously introduced indicators of positioning quality by simulated degradation of the input data.
机译:本文提出了一种方法,可以直接在飞行中精确记录机载激光数据,其精度足以满足大多数衍生产品的需求,例如数字地形模型。我们首先提出整合GPS / INS / LiDAR数据以在飞行中直接生成激光点云的策略,并分析其准确性。后者要求对所有系统组件(即轨迹,激光,系统校准)在线执行功能协方差传播,并在飞行路线的末端添加扫描几何形状的影响。对扫描几何学的研究需要对植被进行分类,并对地形法线进行粗略估计。这是通过我们先前提出的离线质量分析方法来实现的。本文的第二部分重点介绍定位组件。在接近地形的高分辨率扫描中,所得点云的绝对精度主要取决于轨迹的质量,该轨迹的质量与GPS解决方案的类型(例如绝对定位,DGPS,RTK)有关。为了实时达到点云的亚分米精度,需要RTK-GPS解决方案。这需要建立通信链路以传输GPS校正(或测量值)。在基于直升机的任务的特定环境下,我们使用不同的通信方法来分析在几次飞行中获得的RTK-GPS / ALS的可用性。我们主要关注全国参考GNSS网络的开发,并通过实验确认机载激光数据的实时配准是可行的,且精度达到亚分米。这种质量不仅足以满足广泛的应用需求,而且还为监视需要较短反应时间的任务提供了新的机会。最后,我们集中讨论无法发送相位和代码校正,并且需要预测差分载波相位定位质量的情况。我们通过模拟输入数据的降级来验证先前引入的定位质量指标。

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