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Aperture-array acquisition scheme for optical links in atmospheric turbulence

机译:大气湍流光链路的孔径阵列采集方案

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摘要

Spatial acquisition is essential for the establishment of atmospheric optical links. The detection probability in the acquisition process can be degraded by atmospheric-turbulence-induced scintillation. We present an aperture-array acquisition scheme to suppress this scintillation noise. The aperture array is composed of N receiving elements, each containing an aperture to receive the optical signal, an optical filter to reject the background radiation, and a charge-coupled device (CCD) to detect the optical signal. The mathematical model of the long-term average detection probability (LTADP) for the aperture-array acquisition is derived based on the lognormal distribution in turbulent atmosphere, when the CCD sample time is shorter than scintillation characteristic time. In this case, the average signal count and the detection probability in the CCD sample time are both random variables; therefore, the probability density of the average signal count needs to be considered and the LTADP can be calculated based on this probability density. The simulation results show that this aperture-array acquisition scheme can suppress scintillation effectively and enhance the LTADP when the one-aperture signal-to-noise ratio is fixed.
机译:空间采集对于建立大气光链路至关重要。大气湍流引起的闪烁会降低采集过程中的检测概率。我们提出一种孔径阵列采集方案来抑制这种闪烁噪声。光圈阵列由N个接收元件组成,每个接收元件都包含一个接收光信号的光圈,一个滤除背景辐射的滤光器以及一个检测光信号的电荷耦合器件(CCD)。当CCD采样时间短于闪烁特征时间时,基于湍流大气中的对数正态分布,推导了孔径阵列采集的长期平均检测概率(LTADP)的数学模型。在这种情况下,CCD采样时间内的平均信号数和检测概率都是随机变量;因此,需要考虑平均信号计数的概率密度,并且可以基于该概率密度来计算LTADP。仿真结果表明,当单孔信噪比固定时,该孔径阵列采集方案可以有效抑制闪烁并增强LTADP。

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