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Terrestrial optical wireless communication propagation analysis considering Malaysia's weather condition

机译:考虑马来西亚天气情况的地面光无线通信传播分析

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The reflection of sunlight by mirrors or known as the heliograph is an early method of optical wireless communication (OWC). Modern OWC was an offshoot of the development of laser technologies. Recently, OWC has expended to include terrestrial networks and deep space mission between points with a distance separation ranging from 100m at rates up to 10Gbps (Bouchet, O, 2006). Naturally, modern communication system reveals much higher data rates with better quality of service (QoS) compared to these ancient methods. There are many advantages of OWC which are important for a terrestrial system. In this work, a description and system performance characterization of the OWC are presented. Atmospheric effects (attenuation and turbulence), channel model and communication performance factors such as bit error rate (BER) and outage probability in weak turbulence condition were also studied and discussed. The OWC system are designed and simulated for performance characterization considering Subang terrestrial.
机译:通过镜子或称为Heliograph反射日光是光学无线通信(OWC)的早期方法。现代OWC是激光技术发展的分支。最近,OWC已扩展到包括点之间的地面网络和深空任务,其距离间隔从100m到10Gbps的速率不等(Bouchet,O,2006年)。自然地,与这些古老的方法相比,现代的通信系统显示出更高的数据速率和更好的服务质量(QoS)。 OWC有许多优点,这些优点对于地面系统很重要。在这项工作中,给出了OWC的描述和系统性能表征。还研究和讨论了在弱湍流条件下的大气效应(衰减和湍流),信道模型和通信性能因素,例如误码率(BER)和中断概率。 OWC系统是针对考虑到Subang地面的性能表征而设计和仿真的。

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