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首页> 外文期刊>Optics Letters >Fiber optic bundle array wide field-of-view optical receiver for free space optical communications
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Fiber optic bundle array wide field-of-view optical receiver for free space optical communications

机译:用于自由空间光通信的光纤束阵列宽视场光接收机

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摘要

We propose a design for a free space optical communications (FSOC) receiver terminal that offers an improved field of view (FOV) in comparison to conventional FSOC receivers. The design utilizes a microlens to couple the incident optical signal into an individual fiber in a bundle routed to remote optical detectors. Each fiber in the bundle collects power from a solid angle of space; utilizing multiple fibers enhances the total FOV of the receiver over typical single-fiber designs. The microlens-to-fiber-bundle design is scalable and modular and can be replicated in an array to increase aperture size. The microlens is moved laterally with a piezoelectric transducer to optimize power coupling into a given fiber core in the bundle as the source appears to move due to relative motion between the transmitter and receiver. The optimum position of the lens array is determined via a feedback loop whose input is derived from a position sensing detector behind another lens. Light coupled into like fibers in each array cell is optically combined (in fiber) before illuminating discrete detectors.
机译:我们提出了一种针对自由空间光通信(FSOC)接收器终端的设计,与传统的FSOC接收器相比,该设计提供了改进的视场(FOV)。该设计利用微透镜将入射的光信号成束地耦合到一条单独的光纤中,然后发送到远程光学检测器。束中的每根光纤都从一个立体角度收集功率;与典型的单光纤设计相比,利用多光纤可以提高接收器的总FOV。微透镜到光纤束的设计是可扩展和模块化的,可以复制成阵列以增加孔径。微透镜通过压电换能器横向移动,以优化功率耦合到束中给定的光纤芯中,因为源由于发射器和接收器之间的相对运动而移动。透镜阵列的最佳位置是通过反馈回路确定的,反馈回路的输入来自另一个透镜后面的位置检测器。在照明离散检测器之前,将耦合到每个阵列单元中类似光纤的光进行光学组合(在光纤中)。

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