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Mitigation of beam fluctuation due to atmospheric turbulence and prediction of control quality using intelligent decision-making tools

机译:使用智能决策工具减轻由于大气湍流引起的光束波动并预测控制质量

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In free-space optical link (FSOL), atmospheric turbulence causes fluctuations in both intensity and phase of the received beam and impairing link performance. The beam motion is one of the main causes for major power loss. This paper presents an investigation on the performance of two types of controller designed for aiming a laser beam to be at a particular spot under dynamic disturbances. The multiple experiment observability nonlinear input-output data mapping is used as the principal components for controllers design. The first design is based on the Taguchi method while the second is artificial neural network method. These controllers process the beam location information from a static linear map of 2D plane: optoelectronic position detector, as observer, and then generate the necessary outputs to steer the beam with a microelectromechanical mirror: fast steering mirror. The beam centroid is computed using monopulse algorithm. Evidence of suitability and effectiveness of the proposed controllers are comprehensively assessed and quantitatively measured in terms of coefficient of correlation, correction speed, control exactness, centroid displacement, and stability of the receiver signal through the experimental results from the FSO link setup established for the horizontal range of 0.5 km at an altitude of 15.25 m. The test field type is open flat terrain, grass, and few isolated obstacles.
机译:在自由空间光链路(FSOL)中,大气湍流会导致接收光束的强度和相位发生波动,并削弱链路性能。光束运动是造成主要功率损耗的主要原因之一。本文对两种类型的控制器的性能进行了研究,这些控制器设计用于在动态扰动下将激光束对准特定位置。多次实验可观察性非线性输入输出数据映射被用作控制器设计的主要组成部分。第一种设计是基于田口方法,而第二种是人工神经网络方法。这些控制器处理二维平面静态线性图上的光束位置信息:光电位置检测器,作为观察器,然后生成必要的输出,以使用微机电镜(快速转向镜)操纵光束。使用单脉冲算法计算束重心。通过针对水平方向建立的FSO链路设置的实验结果,根据相关系数,校正速度,控制精度,质心位移和接收器信号的稳定性,对所提出控制器的适用性和有效性进行了全面评估和定量测量。高度为15.25 m时,射程为0.5 km。测试场类型是开放的平坦地形,草地和很少的障碍物。

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