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Flag dual amplitude pulse position modulation for atmospheric FSO communications

机译:国旗对大气FSO通信的双幅度脉冲位置调制

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In this paper, we propose a novel flag dual amplitude pulse position modulation (FDAPPM) for free space optical (FSO) systems in atmospheric turbulence-induced fading channels. The proposed scheme provides low receiver complexity due to the build-in symbol synchronization and does not have the insertion/deletion errors because of the fixed symbol length. Symbol structure and transmission rate of the FDAPPM are introduced. The conditional pairwise error probability (PEP) of the FDAPPM FSO system in gamma-gamma turbulence-induced fading channels is derived, and a closed-form of the unconditional PEP in terms of Meijer G-function is presented. A high SNRs asymptotic bit error probability (BEP) of the proposed scheme is presented, and the diversity order and SNR modulation gain are also derived. Numerical results are further demonstrated to confirm the analysis of the error performance of the FDAPPM and compared with the conventional modulation schemes.
机译:在本文中,我们提出了一种用于大气湍流诱导的衰落通道的自由空间光学(FSO)系统的新型标志双幅度脉冲位置调制(FDAPPM)。由于构建符号同步,所提出的方案提供了低接收器复杂性,并且由于固定符号长度而没有插入/删除误差。介绍了FDAPPM的符号结构和传输速率。 Gamma-Gamma湍流诱导的衰落通道中FDAPPM FSO系统的条件成对误差概率(PEP)是推导出来的,并且提出了Meijer G函数的无条件PEP的封闭形式。提出了所提出的方案的高SNRS渐近误码概率(BEP),并且还导出了分集顺序和SNR调制增益。进一步证明了数值结果以确认对FDAPPM的误差性能的分析,并与传统调制方案进行比较。

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