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Experimental verification and theory for an eight-element multiple-aperture equal-gain coherent laser receiver for laser communications

机译:用于激光通信的八元件多孔径等增益相干激光接收机的实验验证和理论

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The detection and processing of laser communication signals are affected by the finding induced onto these signals by atmospheric turbulence. One method of reducing this fading is to use an array of detectors in which each of the detector outputs are added together coherently. We present experimental verification and theory of a 1.06 mu m eight-element coherent receiver used to mitigate the effects of fading over a l-km outdoor range. The carrier-to-noise ratio (CNR) was measured on a single channel and was then compared with the CNR obtained from the coherent sum of the eight channels. The increase of the mean CNR for the coherent sum as compared with a single aperture was observed proportional to the number of the apertures under different conditions of atmospheric turbulence. The measured mean CNR gain fitted the theoretical prediction well when the laser intensity fluctuations followed the gamma distribution. (C) 1998 Optical Society of America. [References: 13]
机译:激光通信信号的检测和处理受大气湍流在这些信号上引起的发现的影响。减少这种衰落的一种方法是使用检测器阵列,其中每个检测器输出被相干地相加在一起。我们介绍了1.06微米八元相干接收机的实验验证和理论,该接收机用于减轻1公里户外范围内的衰落影响。在单个通道上测量载噪比(CNR),然后将其与从八个通道的相干总和中获得的CNR进行比较。在不同的大气湍流条件下,观察到相干总和的平均CNR与单个孔相比正比于孔的数量。当激光强度波动遵循伽马分布时,测得的平均CNR增益非常符合理论预测。 (C)1998年美国眼镜学会。 [参考:13]

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