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WiFO: A hybrid communication network based on integrated free-space optical and WiFi femtocells

机译:WiFO:基于集成的自由空间光学和WiFi毫微微小区的混合通信网络

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Developments in smart home technology and the Internet of Things have significantly increased the demand for high-speed indoor wireless links. Although the majority of the research conducted in this area is still focused on the efficient usage of radio frequency (RF) spectrum, free-space optical (FSO) networks have also been explored as an alternative due to their large bandwidth potentials and low interference. In this paper we present a hybrid FSO and WiFi system (WiFO) that seamlessly integrates optical femtocell architecture with high mobility WiFi networks. Each FSO femtocell in this indoor communication system is capable of transmitting and receiving data at a rate of 50 Mbps over a distance of up to three meters with a field-of-view of +/- 15 degrees, while still achieving a low bit error rate between 10(-6), and 10(-4). Reed-Solomon forward error correction codes were also applied to the data stream to further reduce the bit error rate to below 10(-7). Different than many other free-space optical communication network using static transceivers, mobility in our WiFO system is achieved through the integration of a WiFi channel in the network protocol. The WiFi channel provides a feedback mechanism and allows for seamless handoffs between FSO femtocells. Additionally, we have experimentally demonstrated the advantage of this WiFO architecture by comparing the throughput of our system with a standard WiFi link in a realistic scenario. Our investigation has shown that the WiFO system presented in this work offers a cost-effective and easy-to-implement approach to significantly increase the capacity of current WiFi networks.
机译:智能家居技术和物联网的发展大大增加了对高速室内无线链路的需求。尽管在该领域进行的大多数研究仍集中在射频(RF)频谱的有效利用上,但由于自由空间光(FSO)网络具有较大的带宽潜力和较低的干扰,因此也已被研究为替代方案。在本文中,我们提出了一种混合式FSO和WiFi系统(WiFO),它将光学毫微微小区架构与高移动性WiFi网络无缝集成。这种室内通信系统中的每个FSO飞蜂窝都能够在长达三米的距离内以+/- 15度的视场以50 Mbps的速率发送和接收数据,同时仍然实现低位错误比率介于10(-6)和10(-4)之间。 Reed-Solomon前向纠错码也应用于数据流,以进一步将误码率降低到10(-7)以下。与使用静态收发器的许多其他自由空间光通信网络不同,我们的WiFO系统中的移动性是通过将WiFi信道集成到网络协议中来实现的。 WiFi通道提供了一种反馈机制,并允许FSO飞蜂窝之间的无缝切换。此外,在实际情况下,我们通过将系统吞吐量与标准WiFi链路进行比较,实验性地证明了这种WiFO架构的优势。我们的调查表明,这项工作中介绍的WiFO系统提供了一种经济高效且易于实现的方法,可以显着提高当前WiFi网络的容量。

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