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45 Mbps Cat's Eye Modulating Retro-reflector Link Over 7 Km

机译:超过7 Km的45 Mbps猫眼调制后向反射链路

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Modulating retro-reflectors (MRR) allow free space optical links with no need for pointing, tracking or a laser on one end of the link. They work by coupling a passive optical retro-reflector with an optical modulator. The most common kind of MRR uses a corner cube retro-reflector. These devices must have a modulator whose active area is as large as the area of the corner cube. This limits the ability to close longer range high speed links because the large aperture need to return sufficient light implies a large modulator capacitance. To overcome this limitation we developed the concept of a cat's eye MRR. Cat's eye MRRs place the modulator in the focal plane of a lens system designed to passively retro-reflect light. Because the light focuses onto the modulator, a small, low capacitance, modulator can be used with a large optical aperture. However, the position of the focal spot varies with the angle of incidence so an array of modulators must be placed in the focal plane, In addition, to avoid having to drive all the modulator pixels, an angle of arrival sensor must be used. We discuss several cat's eye MRR systems with near diffraction limited performance and bandwidths of 45 Mbps. We also discuss a link to a cat's eye MRR over a 7 Km range.
机译:调制后向反射器(MRR)允许自由空间的光学链路,而无需在链路的一端进行指向,跟踪或激光照射。它们通过将无源光学后向反射器与光学调制器耦合来工作。 MRR最常见的一种是使用角cube棱镜后向反射器。这些设备必须具有一个调制器,该调制器的有效面积应等于角锥的面积。这限制了关闭较长距离高速链路的能力,因为大孔径需要返回足够的光就意味着大的调制器电容。为了克服此限制,我们开发了猫眼MRR的概念。猫眼的MRR将调制器放置在旨在被动回射光的透镜系统的焦平面中。由于光会聚在调制器上,因此可以使用具有小光学孔径的小,低电容的调制器。但是,焦点的位置随入射角而变化,因此必须在焦平面中放置一系列调制器。此外,为避免驱动所有调制器像素,必须使用到达角传感器。我们讨论了几种具有近衍射极限性能和45 Mbps带宽的猫眼MRR系统。我们还将讨论到7公里范围内的猫眼MRR的链接。

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