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首页> 外文期刊>Applied optics >Aperture dependence of the mixing efficiency, the signal-to-noise ratio, and the speckle number in coherent lidar receivers
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Aperture dependence of the mixing efficiency, the signal-to-noise ratio, and the speckle number in coherent lidar receivers

机译:相干激光雷达接收器中混合效率,信噪比和散斑数的孔径依赖性

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摘要

With the aid of the van Cittert-Zernike theorem we develop an analytical expression for the ensemble-averaged heterodyne mixing efficiency m coherent lidar receivers that are looking at a diffuse target that is in the receiver's far field. Our extremely simple and straightforward analysis shows that the dependence of the mixing efficiency on the receive aperture size d_(R) first follows a parabolic decrease and later approaches a (d_(R))~(-2) function. As a consequence, the signal-to-noise ratio does not increase proportionally to the aperture area but saturates. For the system model chosen, the heterodyne mixing efficiency exhibits the same functional dependence on the lidar geometry as the reciprocal of the number of speckle cells within the receive aperture.
机译:借助van Cittert-Zernike定理,我们开发了相干激光雷达接收器的整体平均外差混合效率的解析表达式,该相干激光雷达接收器正看着接收器远场中的漫射目标。我们极其简单直接的分析表明,混合效率对接收孔径大小d_(R)的依赖性首先是抛物线减小,然后是(d_(R))〜(-2)函数。结果,信噪比不会与孔径面积成比例地增加,而是会饱和。对于所选的系统模型,外差混合效率对激光雷达几何形状的功能依赖性与接收孔内斑点细胞数量的倒数相同。

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