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A Wavelet-Based Echo Detector for Waveform LiDAR Data

机译:基于小波的LiDAR数据回波检测器

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This paper presents a wavelet-based (WB) echo detector that can recover the echoes missed by a light detection and ranging (LiDAR) system via on-the-fly detection. An on-the-fly detection method normally utilizes a simple threshold (TH) to register a target point. Points that belong to weak and/or overlapping echoes are much complicated and are easily missed by TH approaches. The proposed detector based on wavelet transformation is robust to noise and is capable of resolving overlapping echoes. It is thus expected to be good at handling missing echoes. A simulated waveform data set and a real waveform data set of a forest area were both used in this paper. The simulated waveform data were utilized to compare the proposed detector with zero crossing (ZC) and Gaussian decomposition (GD) detectors in terms of their ability to deal with weak or overlapping echoes. The real waveform data set acquired from Leica ALS60 was used to demonstrate a WB algorithm for exploring the missing echoes. Experiments using the simulated data showed that the WB and GD detectors are superior to the ZC detector in finding overlapping echoes. The WB algorithm performs well when dealing with overlapping echoes with a low signal-to-noise ratio. Experiments using the real waveform data show that 31.5% additional weak or overlapping echoes can be detected by the WB detector compared with the point cloud provided by the system. With such additional points, the mean and root-mean-square errors of the digital elevation model differences can be improved from 0.72 and 0.79 m to 0.16 and 0.59 m, respectively.
机译:本文提出了一种基于小波(WB)的回波检测器,它可以通过实时检测来恢复光检测和测距(LiDAR)系统遗漏的回波。动态检测方法通常利用简单阈值(TH)来注册目标点。属于弱回波和/或重叠回波的点非常复杂,很容易被TH方法忽略。提出的基于小波变换的检测器对噪声具有鲁棒性,并且能够解决重叠的回波。因此,有望很好地处理丢失的回声。本文使用了林区的模拟波形数据集和真实波形数据集。利用模拟波形数据比较拟议的探测器与零交叉(ZC)和高斯分解(GD)探测器在处理弱或重叠回声方面的能力。从Leica ALS60获得的真实波形数据集用于演示一种WB算法,用于探索丢失的回波。使用模拟数据进行的实验表明,WB和GD检测器在发现重叠回波方面优于ZC检测器。当以低信噪比处理重叠的回波时,WB算法表现良好。使用实际波形数据进行的实验表明,与系统提供的点云相比,WB检测器可以检测到31.5%的其他弱回声或重叠回声。使用这些附加点,可以将数字高程模型差异的均方根误差和均方根误差分别从0.72和0.79 m改善到0.16和0.59 m。

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