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首页> 外文期刊>Applied optics >Analytical empirical expressions of the transverse coherence properties for monostatic and bistatic lidars in the presence of moderate atmospheric refractive-index turbulence
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Analytical empirical expressions of the transverse coherence properties for monostatic and bistatic lidars in the presence of moderate atmospheric refractive-index turbulence

机译:在中等大气折射率湍流下单基地和双基地激光雷达横向相干特性的解析经验表达式

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摘要

There have been many analyses of the reduction of lidar system efficiency in bistatic geometry caused by beam spreading and by fluctuations along the two paths generated by refractive-index turbulence. Although these studies have led to simple, approximate results that provide a reliable basis for preliminary assessment of lidar performance, they do not apply to monostatic lidars. For such systems, calculations and numerical simulations predict an enhanced coherence for the backscattered field. However, to the authors' knowledge, a simple analytical mathematical framework for diagnosing the effects of refractive-index turbulence on the performance of both bistatic and monostatic coherent lidars does not exist. Here analytical empirical expressions for the transverse coherence variables and the heterodyne intensity are derived for bistatic and monostatic lidars as a function of moderate atmospheric refractive-index turbulence within the framework of the Gaussian-beam approximation.
机译:对于由光束扩展以及由折射率湍流产生的沿两条路径的波动引起的双基地几何结构中激光雷达系统效率降低的分析已有很多。尽管这些研究得出的简单,近似结果为激光雷达性能的初步评估提供了可靠的依据,但它们不适用于单基地激光雷达。对于这样的系统,计算和数值模拟预测了反向散射场的增强相干性。但是,据作者所知,尚不存在用于诊断折射率湍流对双基地和单基地相干激光雷达性能影响的简单分析数学框架。在此,根据高斯光束近似框架内中等大气折射率湍流,得出了双基地和单基地激光雷达横向相干变量和外差强度的分析经验表达式。

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