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Proposed airborne optical fiber asynchronous CDMA systems using fully optical orthogonal codes for real-time avionic data distributions and computer interconnects

机译:提议的机载光纤异步CDMA系统,使用全光正交码进行实时航空电子数据分配和计算机互连

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We report the design of optical fiber asynchronous code-division multiple-access (CDMA) systems using fully optical orthogonal codes (FOOCs), which can be employed to support future airborne real-time communication services. The use of incoherent optical CDMA (IO-CDMA) can result in lower complexity and more reliable implementation than that of the coherent version, so this makes IO-CDMA more adequate for operation in the severe aircraft environment. When FOOCs are used in the IO-CDMA systems, the peaks of all the cross-correlation functions and all the sidelobes of any auto-correlation function are then limited to "1" (i.e., the minimum correlation constraint for incoherent optical processing) in fully asynchronous transmissions. Moreover, proposed systems can effectively support multi-rate and variable-rate data communications with no violation of the minimum correlation constraint and no change of IO-CDMA encoders/decoders. This characteristic can be used to improve the system flexibility and availability. A basic experiment is also demonstrated to verify the characteristics of FOOCs.
机译:我们报告了使用全光正交码(FOOC)的光纤异步码分多址(CDMA)系统的设计,该系统可用于支持未来的机载实时通信服务。与相干版本相比,使用非相干光学CDMA(IO-CDMA)可以降低复杂性并实现更可靠,因此,这使得IO-CDMA更适合在恶劣的飞机环境中运行。当在IO-CDMA系统中使用FOOC时,所有互相关函数的峰值和任何自相关函数的所有旁瓣都被限制为“ 1”(即,非相干光学处理的最小相关约束)。完全异步传输。而且,所提出的系统可以有效地支持多速率和可变速率数据通信,而不会违反最小相关约束并且不会改变IO-CDMA编码器/解码器。此特性可用于提高系统的灵活性和可用性。还演示了一个基本实验来验证FOOC的特性。

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