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Detecting and characterising returns in a pulsed ladar system

机译:在脉冲激光雷达系统中检测和表征回报

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A new multi-spectral laser radar (ladar) system based on the time-correlated single photon counting, time-of-flight technique has been designed to detect and characterise distributed targets at ranges of several kilometres. The system uses six separated laser channels in the visible and near infrared part of the electromagnetic spectrum. The authors present a method to detect the numbers, positions, heights and shape parameters of returns from this system, used for range profiling and target classification. The algorithm has two principal stages: non-parametric bump hunting based on an analysis of the smoothed derivatives of the photon count histogram in scale space, and maximum likelihood estimation using Poisson statistics. The approach is demonstrated on simulated and real data from a multi-spectral ladar system, showing that the return parameters can be estimated to a high degree of accuracy.
机译:设计了一种基于时间相关的单光子计数,飞行时间技术的新型多光谱激光雷达(拉达)系统,以检测和表征几公里范围内的分布式目标。该系统在电磁光谱的可见和近红外部分使用六个分开的激光通道。作者提出了一种从该系统中检测返回的数量,位置,高度和形状参数的方法,该方法用于范围分析和目标分类。该算法具有两个主要阶段:基于对尺度空间中光子计数直方图的平滑导数的分析而进行的非参数碰撞搜索,以及使用泊松统计的最大似然估计。在来自多光谱雷达系统的模拟和真实数据上演示了该方法,表明可以高度准确地估计返回参数。

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