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Single and multiple transceiver simulation modules for free-space optical channel in tropical malaysian weather

机译:热带马来西亚天气中用于自由空间光信道的单个和多个收发器仿真模块

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Free space optics (FSO) is an optical communication technology that uses light propagating in free space to transmit data for telecommunications or computer networking, and is exposed to atmospheric attenuation, like absorption and scattering. These types of attenuations seriously degrade the strength of transmitted signal, especially when single beam FSO system is used. So to overcome this problem, a multiple beam FSO transceiver system has become dominance and is usually used. In this paper simulation models are obtained by using average rain attenuation which is evaluated from the five months collected rain intensity data. These models are obtained to demonstrate the results concerning link distance and received optical power of using multiple beam FSO system and comparing it with single beam FSO system. Comparison is carried out in terms of signal to noise ratio (SNR), geometrical losses, atmospheric losses, and bit error rate (BER). From the results it is clear that, by using up to four beams has improved geometrical loss, sensitivity of the receiver, SNR, and link distance.
机译:自由空间光学(FSO)是一种光通信技术,它使用在自由空间中传播的光传输数据以进行电信或计算机网络连接,并暴露于大气衰减(如吸收和散射)中。这些类型的衰减会严重降低发射信号的强度,尤其是在使用单波束FSO系统时。因此,为了克服这个问题,多波束FSO收发器系统已成为主流,并且通常被使用。在本文中,通过使用平均降雨衰减来获得模拟模型,该平均降雨衰减是根据五个月收集的降雨强度数据进行评估的。获得这些模型是为了证明有关使用多光束FSO系统的链路距离和接收光功率并将其与单光束FSO系统进行比较的结果。根据信噪比(SNR),几何损耗,大气损耗和误码率(BER)进行比较。从结果可以明显看出,通过使用多达四个波束,可以改善几何损耗,接收器灵敏度,SNR和链路距离。

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