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Design of the High-Speed Framing, FEC, and Interleaving Hardware Used in a 5.4km Free-Space Optical Communication Experiment

机译:5.4公里自由空间光通信实验中使用的高速成帧,FEC和交错硬件的设计

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The forward error correction (FEC) and interleaver realizations used in a 5.4 km horizontal-path link experiment incorporated several unique elements that were specifically tailored to address turbulence-induced fading. To facilitate optimization studies, this hardware was designed to afford a high degree of flexibility in the FEC code structure and interleaver length. An essential aspect of this structure was the standards-compliant client interface, which provided seamless connectivity to fiber-based terrestrial networks. Through the use of an OTU1 (2.667 Gbaud) architecture with nonstandard interleaving, error-free transmission was achieved in the presence of strong scintillation that produced fade events that frequently exceeded 10 ms in duration.rnThis work was sponsored by the Department of Defense, RRCO DDR&E, under Air Force Contract FA8721-05-C-0002. Opinions, interpretations, conclusions and recommendations are those of the authors and are not necessarily endorsed by the United States Government.
机译:在5.4 km水平路径链路实验中使用的前向纠错(FEC)和交织器实现方案包含了几个专门为解决湍流引起的衰落而专门设计的元素。为促进优化研究,此硬件的设计旨在在FEC代码结构和交织器长度方面提供高度的灵活性。该结构的一个重要方面是符合标准的客户端接口,它提供了与基于光纤的地面网络的无缝连接。通过使用具有非标准交织的OTU1(2.667 Gbaud)架构,在强烈闪烁的情况下实现了无错传输,该闪烁产生了持续时间通常超过10 ms的衰落事件.rn这项工作是由RRCO国防部赞助的DDR&E,根据空军合同FA8721-05-C-0002。观点,解释,结论和建议是作者的观点,不一定得到美国政府的认可。

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