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Prototyping Multi-Transceiver Free-Space Optical Communication Structures

机译:原型多收发器自由空间光通信结构

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Wireless networking has conventionally been realized via radio frequency (RF) based communication technologies. However, the capacity of these networks are limited by the availability of the RF spectrum. Free-Space-Optical (FSO) communication has the potential to deliver wireless communication links at optical-level speeds. Although it has the advantage of high-speed modulation, maintenance of line-of-sight (LOS) between transceivers during an on-going transmission is an important issue since FSO transmitters are highly directional. In this paper, we present a prototype implementation of such multi-transceiver electronically-steered communication structures. Our prototype uses a simple LOS detection and establishment protocol and assigns logical data streams to appropriate physical links.We show that by using multiple directional transceivers we can maintain optical wireless links with minimal disruptions that are caused by relative mobility of communicating nodes.
机译:传统上已经通过基于射频(RF)的通信技术来实现无线联网。但是,这些网络的容量受到RF频谱可用性的限制。自由空间光(FSO)通信具有以光速传输无线通信链路的潜力。尽管它具有高速调制的优点,但由于FSO发射器是高度定向的,因此在进行中的发射期间维护收发器之间的视线(LOS)是一个重要的问题。在本文中,我们提出了这种多收发器电子控制通信结构的原型实现。我们的原型使用简单的LOS检测和建立协议,并将逻辑数据流分配给适当的物理链路。我们证明,通过使用多个定向收发器,我们可以以最小的通信节点相对移动性造成的中断来维护光学无线链路。

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