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首页> 外文期刊>EPJ Web of Conferences >Set of Algorithms and Techniques for Accurate 3D, Single Beam – Single Pointing, Lidar Measurements for Slant Range Visibility, Planetary Boundary Layer Height and Wind Speed Retrieval, Atmospheric Layers Spatial Distribution and Categorization in Real Time
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Set of Algorithms and Techniques for Accurate 3D, Single Beam – Single Pointing, Lidar Measurements for Slant Range Visibility, Planetary Boundary Layer Height and Wind Speed Retrieval, Atmospheric Layers Spatial Distribution and Categorization in Real Time

机译:一套算法和精确3D,单束 - 单指向,LIDAR测量,用于倾斜范围可见性,行星边界层高度和风速检索,大气层空间分布和实时分类

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摘要

In this work, a full set of recently developed algorithms and techniques is presented, for a single beam-single pointing lidar to be able to perform operational and independent accurate 3 Dimensional (3D) measurements, for slant range visibility, wind speed retrieval, atmospheric layers spatial distribution and categorization, as well as Planetary Boundary Layer Height (PBLH) retrieval, in real or Near Real Time (NRT).The idea behind this development was for any single lidar to be able to perform a set of accurately measured products, either mobile or stationary, with or without network connectivity with other sensors for data-information exchange. The products were determined by the needs of lidar remote scientific and commercial community, in order to be even more attractive and valuable to atmospheric scientists, meteorologists, aviation and shipping safety operators, as well as to the Space lidar community.
机译:在这项工作中,提出了一整套最​​近开发的算法和技术,用于单光束 - 单个指向LIDAR能够执行操作和独立精确的3维(3D)测量,用于倾斜范围可见性,风速检索,大气层次分布和分类,以及行星边界层高度(PBLH)检索,在真实或接近实时(NRT)。这种开发背后的想法是任何单一LIDAR能够执行一套准确测量的产品,移动或静止,有或没有网络连接与其他传感器进行数据信息交换。产品取决于激光雷达远程科学和商业社区的需求,以更具吸引力和对大气科学家,气象学家,航空和航运安全运营商以及空间激光器社区的需求。

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