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首页> 外文期刊>Signal processing >Application of non-uniform to uniform data mapping to: Shallow angle LIDAR with the introduction of independent variable techniques
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Application of non-uniform to uniform data mapping to: Shallow angle LIDAR with the introduction of independent variable techniques

机译:非均匀到统一数据映射在以下方面的应用:引入独立变量技术的浅角激光雷达

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摘要

Vessel mounted shallow angle LIDAR makes it possible to measure the profile of sea waves at distances up to 1 km remote from the craft on which the instrument is mounted which enables a whole range of novel marine applications. However, the spatial sample locations at which the wave profiles are measured are highly non-uniformly distributed in space which renders most traditional discrete data processing techniques unusable. Consequently, in order to use the measurements it is necessary to remap the wave profile data onto an equivalent uniform sampled grid. Furthermore, to achieve the maximum range such LIDARS must operate at or near to the bare Nyquist minimum number of data points and thus local interpolation is not viable for this task. Existing non-uniform to uniform mapping methods are explored in relation to shallow angle LIDAR together with a new approach based upon transformation of the independent variable. This avoids the usual problems associated with ill conditioning that affect inversion based techniques and does not require regularisation. The discussion is illustrated using a combination of simulations and actual LIDAR wave profile measurements which are mapped onto uniform sample distributions. Effects such a wave shadowing are considered in which non-uniformities extend over several equivalent uniform steps.
机译:船上安装的浅角激光雷达可以测量距仪器安装在其上的船只最远1公里处的海浪剖面,从而实现了一系列新颖的海洋应用。但是,测量波轮廓的空间样本位置在空间中高度不均匀分布,这使得大多数传统的离散数据处理技术无法使用。因此,为了使用这些测量,必须将波剖面数据重新映射到等效的均匀采样网格上。此外,为了达到最大范围,这种激光雷达必须在裸露的奈奎斯特最小数据点数或附近工作,因此局部插值对于此任务不可行。针对浅角度激光雷达,探讨了现有的非均匀到均匀映射方法,以及基于自变量转换的新方法。这避免了与不适条件相关的常见问题,这些问题会影响基于反转的技术,并且不需要进行正则化。使用模拟和实际LIDAR波廓线测量值的组合来说明讨论,将其映射到均匀的样本分布上。考虑了这样的波遮蔽效应,其中不均匀性在几个等效的均匀步骤上延伸。

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