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Noise Suppression in the Signal Spectral Induced by Atmospheric Turbulence on the FSO (Free-Space Optical) Communications

机译:FSO(自由空间光)通信中由大气湍流引起的信号频谱中的噪声抑制

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Beam wander and spatial noise that are modulated on optical propagation produce noise modulation in the signal spectral before being received by a Photodetector (PD). In order to suppress noise modulation in the signal spectral, we present an Optical Spatial Filter (OSF) method that is composed of the cone reflector and a pinhole as a detection method. A cone reflector is designed to suppress beam wander in order to minimize temporal noise that fluctuates randomly and governs reflection of the deflected focus spot into the narrow region of pinhole. The pinhole governs the Fresnel diffraction in order to suppress spatial noise in the center of focus spot that undergoes fluctuation and random frequencies as well. Through simultaneous suppression in temporal noise caused by beam wander and spatial noise using the OSF method, noise modulation in the signal spectral can be minimized optimally. We compared the OSF with the Direct-Detection (DD) method by experimentation. The results of the experiment show significant improvements for noise suppression in the signal spectral. The average values of the Signal-to-Noise Ratio (SNR) increase, namely, 37.5 dB, 38.5 dB, 38.7 dB and 39.2 dB for pinhole diameters of 50 μm, 40 μm, 30 μm, and 20 μm, respectively.
机译:在光学传播上调制的光束漂移和空间噪声在被光电探测器(PD)接收之前,会在信号频谱中产生噪声调制。为了抑制信号频谱中的噪声调制,我们提出了一种由锥反射器和针孔组成的光学空间滤波器(OSF)方法作为检测方法。锥形反射器设计用于抑制光束漂移,以最大程度地减小随时间波动的暂时噪声,并控制偏转的焦点向针孔狭窄区域的反射。针孔控制菲涅耳衍射,以抑制焦点中心的空间噪声,该空间噪声也会受到波动和随机频率的影响。通过使用OSF方法同时抑制由波束漂移和空间噪声引起的时间噪声,可以使信号频谱中的噪声调制最佳化。通过实验,我们将OSF与直接检测(DD)方法进行了比较。实验结果表明,信号频谱中的噪声抑制有了显着改善。针孔直径分别为50μm,40μm,30μm和20μm时,信噪比(SNR)的平均值分别增加37.5 dB,38.5 dB,38.7 dB和39.2 dB。

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