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首页> 外文期刊>Advances in Optical Technologies >Optical Spatial Filter to Suppress Beam Wander and Spatial Noise Induced by Atmospheric Turbulence in Free-Space Optical Communications
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Optical Spatial Filter to Suppress Beam Wander and Spatial Noise Induced by Atmospheric Turbulence in Free-Space Optical Communications

机译:光学空间滤波器抑制自由空间光通信中大气湍流引起的光束漂移和空间噪声

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摘要

We propose an optical spatial filter (OSF) method to suppress beam wander and spatial noise effects. Signal from random displacements of the focus spot around the optical axis within the constricted area is collected. This method advantageously suppresses fluctuations in signal intensity.The OSF consists of a pinhole and cone reflector.Thepinhole produces Fresnel diffraction on the focus spot. The cone reflector provides directed reflectance onto the pinhole for random focus spot displacements due to beam wander. The calculations of signal power are based on fluctuations of signal intensity that are minimized by the circular aperture function of the pinhole and the cosine of the reflectance angle fromthe cone reflector. The method is applied to free-space optical communications at a wavelength of 1.55 μm with an atmospheric chamber to provide optical propagation media. Based on calculations, the beam wander angles that can be received by the OSF are from 14.0° to 28.0°. Moreover, based on experiment, the OSF with a pinhole diameter of 20.0 μm and cone reflector diameter of 1.5mm produces signal power of ?15.3 dBm. Both calculations and experiment show that the OSF enhances the received signal power in the presence of turbulence.
机译:我们提出一种光学空间滤波器(OSF)方法来抑制光束漂移和空间噪声影响。收集来自收缩区域内围绕光轴的焦点随机位移的信号。这种方法有利于抑制信号强度的波动。OSF由针孔和锥形反射器组成。针孔在焦点上产生菲涅耳衍射。锥形反射镜可将定向反射率反射到针孔上,以消除由于光束漂移而引起的随机焦点位移。信号功率的计算基于信号强度的波动,该波动通过针孔的圆形孔径函数和来自圆锥反射器的反射角的余弦值得以最小化。该方法适用于与大气室在波长为1.55μm的自由空间光通信中提供光传播介质。根据计算,OSF可以接收的光束漂移角为14.0°至28.0°。此外,根据实验,针孔直径为20.0μm,圆锥反射器直径为1.5mm的OSF产生的信号功率为〜15.3 dBm。计算和实验均表明,在存在湍流的情况下,OSF增强了接收信号的功率。

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