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Adaptive receiver array for WDM optical wireless communication

机译:用于WDM光无线通信的自适应接收器阵列

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In this paper we use Monte-Carlo methods to study the passage of light through fog and evaluate the possibilities of enhancing OWC (optical wireless communication) performance by adaptively changing the FOV (field of view). The FOV is increased by selectively activating detectors in an array, and the signal and noise powers for different settings are computed. The WDM C-band range of wavelengths was investigated as they facilitate seamless fiber-wireless communication and since eye-safety regulations sanction higher power transmission than for near infrared wavelengths. Power reception improvements of tens of percent, in comparison to the use of a single detector, are demonstrated. In a numerical example, this is translated into BER improvements of several orders of magnitude.
机译:在本文中,我们使用蒙特卡洛方法研究光线通过雾的通道,并评估通过自适应地改变FOV(视场)来增强OWC(光学无线通信)性能的可能性。通过有选择地激活阵列中的检测器来提高FOV,并计算不同设置的信号功率和噪声功率。研究了WDM C波段的波长范围,因为它们促进了无缝光纤无线通信,并且由于人眼安全法规规定的功率传输比近红外波长更高。与使用单个检测器相比,展示了数十%的功率接收改善。在一个数值示例中,这被转换为几个数量级的BER改进。

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