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首页> 外文期刊>Journal of optics, A. Pure and applied optics: journal of the European Optical Society >Relative positioning precision of the wide-angle airborne laser ranging system
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Relative positioning precision of the wide-angle airborne laser ranging system

机译:广角机载激光测距系统的相对定位精度

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摘要

The positioning precision of ground-based targets is studied as a function of instrument and experiment parameters of the wide-angle airborne laser ranging system (WA-ALRS). The models for range measurements, validated in previous ground-based experiments, are used for simulating aircraft measurements. It is shown that the positioning precision, evaluated from the a posteriori covariance matrix, can be optimized with respect to laser beam divergence, aircraft altitude and number of targets for a given instrument performance. The number of laser shots is then adjusted to yield the desired precision. A precision of approx 1 mm is achieved in the vertical coordinate in a specific experiment assuming only random errors. Most of the systematic errors are believed to be compensated by the adjustment of additional parameters such as trajectory offsets.
机译:根据广角机载激光测距系统(WA-ALRS)的仪器和实验参数,研究了地面目标的定位精度。在先前的地面实验中验证过的距离测量模型用于模拟飞机测量。结果表明,对于给定的仪器性能,从后验协方差矩阵评估的定位精度可以针对激光束发散,飞机高度和目标数量进行优化。然后调整激光发射的次数以产生所需的精度。假设仅随机误差,在特定实验中,垂直坐标的精度约为1 mm。据信大多数系统误差是通过调整附加参数(例如轨迹偏移)来补偿的。

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