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LINK DESIGN FOR NONDIRECTED WIRELESS INFRARED COMMUNICATIONS

机译:非直接无线红外通信的链接设计

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摘要

We optimize the design of a short-range communication system using nondirected line-of-sight IR radiation. We propose a receiver structure comprising a spherical thin-film optical filter and a truncated spherical lens that can significantly outperform an optimized planar-filter system. We can make the passband of the spherical filter arbitrarily narrow without constraining the field of view by using an arbitrarily large filter radius. We argue that a truncation angle of 90 degrees maximizes the receiver field of view when a spherical filter is used. We jointly optimize the transmitter radiation pattern and receiver optical components. Numerical results show that 269 mW of transmitted signal power is sufficient to achieve 100 Mbit/s throughout a 4-m radius cell with high background irradiance. [References: 19]
机译:我们使用非定向视距红外辐射优化短距离通信系统的设计。我们提出了一种接收器结构,该结构包括一个球形薄膜光学滤光片和一个截短的球形透镜,可以大大胜过优化的平面滤光片系统。我们可以通过使用任意大的滤镜半径来使球形滤镜的通带任意变窄而不会限制视场。我们认为,当使用球形滤波器时,90度的截断角可使接收器的视野最大化。我们共同优化发射器的辐射方向图和接收器的光学组件。数值结果表明,在具有高背景辐射的整个4 m半径的单元中,269 mW的发射信号功率足以实现100 Mbit / s。 [参考:19]

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