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Diffuse Mid-UV communication in the presence of obscurants

机译:在存在蒙昧主义中,弥漫中UV通信

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Communication using mid-ultraviolet radiation between 200nm and 280nm has received renewed attention due to advancements in UV LED emitters and unique propagation characteristics at these wavelengths. Atmospheric gases absorb light at mid-UV so that receivers or sensors operating on the earth's surface receive no interference from solar radiation. This so-called “solar-blind” region of the spectrum allows the use of single-photon detection techniques. Further, UV light is strongly scattered by molecules in the air, enabling non-line-of-sight (NLOS) communication. We extend previous work in this area by incorporating angle-dependent Mie scattering into one of the standard propagation models, in an effort to include the effects of aerosols. Experimental results from outdoor measurements using a fog generator are also presented.
机译:由于UV LED发射器的进步和这些波长的独特传播特性,在200nm和280nm之间使用中间紫外线辐射的通信已经收到了重新关注。 大气气体在中紫外线吸收光,使接收器或在地球表面上操作的传感器不会从太阳辐射接收干扰。 这个所谓的“太阳盲和#x201d; 光谱区域允许使用单光子检测技术。 此外,UV光通过空气中的分子强烈地散射,从而实现非视线(NLOS)通信。 我们通过将角度依赖性的MIE散射掺入标准传播模型之一,以包括气溶胶的影响来扩展到该领域的先前工作。 还提出了使用雾发电机的户外测量的实验结果。

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