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Effects of atmospheric turbulence and building sway on optical wireless-communication systems

机译:大气湍流和建筑物摇摆对光无线通信系统的影响

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摘要

Urban optical wireless communication (UOWC) systems are considered a last-mile technology. UOWC systems use the atmosphere as a propagation medium. To provide a line of sight the transceivers are placed on high-rise buildings. However, dynamic wind loads, thermal expansion, and weak earthquakes cause buildings to sway. These sways distort the alignment between transmitter and receiver, causing pointing errors, the outcome of which is fading of the received signal. Furthermore, atmospheric turbulence causes fluctuations in both the intensity and the phase of the received signal, resulting in impaired link performance. A bit-error probability (BEP) model is developed that takes into account both building sway and turbulenceinduced log amplitude fluctuations (i.e., fading of signal intensity) in the regime in which the receiver aperture, D_(0), is smaller than the turbulence coherence diameter, d_(0). It is assumed that the receiver has knowledge about the marginal statistics of the signal fading and the instantaneous signal-fading state.
机译:城市光无线通信(UOWC)系统被认为是最后一英里技术。 UOWC系统使用大气作为传播介质。为了提供视线,将收发器放置在高层建筑物上。但是,动态风荷载,热膨胀和弱地震会导致建筑物摇摆。这些摇摆会扭曲发射机和接收机之间的对准,从而导致指向错误,其结果是接收信号的衰落。此外,大气湍流引起接收信号的强度和相位的波动,从而导致链路性能受损。在接收器孔径D_(0)小于湍流的情况下,开发了一种误码概率(BEP)模型,该模型同时考虑了建筑物的摇摆和湍流引起的对数振幅波动(即信号强度的衰减)相干直径d_(0)。假定接收机具有有关信号衰落和瞬时信号衰落状态的边际统计的知识。

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