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Optical CDMA Coded STBC Based on Chaotic Technique in FSO Communication Systems

机译:FSO通信系统中基于混沌技术的光CDMA编码STBC

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Free-Space Optical (FSO) can provide high-speed communications when the effect of turbulence is not serious. However, Space-Time-Block-Code (STBC) is a good candidate to mitigate this seriousness. This paper proposes a hybrid of an Optical Code Division Multiple Access (OCDMA) and STBC in FSO communication for last mile solutions, where access to remote areas is complicated. The main weakness effecting a FSO link is the atmospheric turbulence. The feasibility of employing STBC in OCDMA is to mitigate these effects. The current work evaluates the Bit-Error-Rate (BER) performance of OCDMA operating under the scintillation effect, where this effect can be described by the gamma-gamma model. The most obvious finding to emerge from the analysis is that the BER can be enhanced by orders of magnitude for different numbers of users and different values of scintillation effects using a MIMO channel as compared to Single-Input-Single-Output (SISO) one. The theoretical analysis of the derived BER, which is based on gamma-gamma model, is validated through the Monte Carlo simulation.
机译:当湍流的影响不严重时,自由空间光学(FSO)可以提供高速通信。但是,空时分组码(STBC)是减轻这种严重性的理想选择。本文针对最后一英里解决方案提出了FSO通信中光码分多址(OCDMA)和STBC的混合方案,该方案适用于偏远地区的接入。影响FSO链接的主要弱点是大气湍流。在OCDMA中采用STBC的可行性是减轻这些影响。当前的工作是评估在闪烁效应下工作的OCDMA的误码率(BER)性能,该效应可以用伽马-伽马模型来描述。从分析中得出的最明显发现是,与单输入单输出(SISO)相比,使用MIMO信道可以为不同数量的用户和不同的闪烁效应值提高BER数量级。通过蒙特卡洛模拟验证了基于伽玛-伽玛模型的派生误码率的理论分析。

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