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ALART: A Novel Lidar System For Vegetation Height Retrieval From Space

机译:ALART:一种新型的激光雷达系统,用于从太空检索植被高度

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We propose a multi-kHz Single-Photon Counting (SPC) space LIDAR, exploiting low energy pulses with high repetition frequency (PRF). The high PRF allows one to overcome the low signal limitations, as many return shots can be collected from nearly the same scattering area. The ALART space instrument exhibits a multi-beam design, providing height retrieval over a wide area and terrain slope measurements. This novel technique, working with low SNRs, allows multiple beam generation with a single laser, limiting mass and power consumption. As the receiver has a certain probability to detect multiple photons from different levels of canopy, a histogram is constructed and used to retrieve the properties of the target tree, by means of a modal decomposition of the reconstructed waveform. A field demonstrator of the ALART space instrument is currently being developed by a European consortium led by cosine | measurement systems and funded by ESA under the TRP program. The demonstrator requirements have been derived to be representative of the target instrument and it will be tested in an equipped tower in woodland areas in the Netherlands. The employed detectors are state-of-the-art CMOS Single-Photon Avalanche Diode (SPAD) matrices with 1024 pixels. Each pixel is independently equipped with an integrated Time-to-Digital Converter (TDC), achieving a timing accuracy that is much lower than the SPAD dead time, resulting in a distance resolution in the centimeter range. The instrument emits nanosecond laser pulses with energy on the order of several μJ, at a PRF of ~ 10 kHz, and projects on ground a three-beams pattern. An extensive field measurement campaign will validate the employed technologies and algorithms for vegetation height retrieval.
机译:我们提出了一种多kHz单光子计数(SPC)空间激光雷达,该雷达利用了具有高重复频率(PRF)的低能量脉冲。高PRF使得人们可以克服低信号限制,因为可以从几乎相同的散射区域收集许多回射。 ALART空间仪器具有多波束设计,可在大范围内进行高度检索并进行地形坡度测量。这项低信噪比(SNR)的新颖技术允许使用单个激光器产生多束光,从而限制了质量和功耗。由于接收器具有一定的概率来检测来自不同冠层的多个光子,因此通过重建波形的模态分解,可以构建直方图并将其用于检索目标树的属性。由余弦(Cosine)牵头的欧洲财团目前正在开发ALART空间仪器的现场演示器。测量系统,由欧洲航天局根据TRP计划资助。演示者的要求已经得出,可以代表目标仪器,它将在荷兰林地地区的一台装有设备的塔中进行测试。所采用的检测器是具有1024个像素的最新CMOS单光子雪崩二极管(SPAD)矩阵。每个像素都独立配备了集成的时间数字转换器(TDC),其计时精度远低于SPAD死区时间,从而导致距离分辨率在厘米范围内。该仪器以约10 kHz的PRF发射几纳秒的能量的纳秒级激光脉冲,并在地面上投射出三束光。广泛的野外测量活动将验证所采用的植被高度检索技术和算法。

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