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Spectrum sensing for free space optical communications in strong atmospheric turbulence channel

机译:强大的大气湍流通道中自由空间光通信的光谱感测

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One of the primary challenges in multi-user optical wireless communications (OWC) is to periodically sense the optical frequency spectrum at the receiver to detect whether the channel is occupied by other transceiver pairs in order to avoid interference. Spectrum sensing enables the user to continuously sense the channel prior to its access to the channel. In this paper, we propose the spectrum sensing of an unknown optical signal over strong atmospheric turbulence channel. The turbulent atmospheric channel causes fluctuations in the received signal intensity, resulting in power loss at the receiver. To mitigate this adverse effect, we present an energy detection based optical spectrum sensing scheme with the spatial diversity reception in the form of a square-law selection diversity. The intensity fluctuations are modeled by a negative exponential distribution. The analytical closed-form expressions for the probability of detection and the probability of false alarm are derived. Based on the derived expressions, we obtain the performance analysis as a function of the system parameters. It is also found that sensing capability is boosted with the square-law diversity scheme.
机译:多用户光学无线通信(OWC)中的主要挑战之一是周期性地感测接收器处的光学频谱以检测信道是否被其他收发器对占用,以避免干扰。光谱感测使用户能够在访问信道之前连续地感知信道。在本文中,我们提出了在强大的大气湍流通道上未知光学信号的频谱感测。湍流大气通道导致接收信号强度的波动,从而导致接收器处的功率损耗。为了减轻这种不利影响,我们呈现了一种基于能量检测的光谱传感方案,其具有方形法选择分集的形式的空间分集接收。强度波动由负指数分布建模。导出了用于检测概率和误报概率的分析闭合表达式。基于派生的表达式,我们将性能分析作为系统参数的函数获得。还发现,通过方法分集方案提高了感测能力。

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