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Optical Wireless Hybrid Networks: Trends, Opportunities, Challenges, and Research Directions

机译:光学无线混合网络:趋势,机遇,挑战和研究方向

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Optical wireless communication (OWC) is an excellent complementary solution to its radio frequency (RF) counterpart. OWC technologies have been demonstrated to be able to support high traffic generated by massive connectivity of the Internet of Things (IoT) and upcoming 5(th) generation (5G) wireless communication systems. As the characteristics of OWC and RF are complementary, a combined application is regarded as a promising approach to support 5G and beyond communication systems. Hybrid RF/optical and optical/optical wireless systems offer an excellent solution for recovering the limitations of individual systems as well as for providing positive features of each of the technologies. An RF/optical wireless hybrid system consists both RF and optical-based wireless technologies, whereas an optical/optical wireless hybrid system consists two or more types of OWC technologies. The co-deployment of wireless systems can improve system performance in terms of throughput, reliability, and energy efficiency of individual networks. This study surveys the state of the art and key research directions regarding optical wireless hybrid networks, being the first extensive survey dedicated to this topic. We provide a technology overview of existing literature on optical wireless hybrid networks, such as RF/optical and optical/optical systems. We consider the RF-based macrocell, small cell, wireless fidelity, and Bluetooth, as well as optical-based visible light communication, light fidelity, optical camera communication, and free-space optical communication technologies for different combinations of hybrid systems. Moreover, we consider underwater acoustic communication for hybrid acoustic/optical systems. The opportunities brought by hybrid systems are presented in detail. We outline important challenges that need to be addressed for successful deployment of optical wireless hybrid network systems for 5G and IoT paradigms.
机译:光学无线通信(OWC)是其射频(RF)对应的优异互补解决方案。已经证明了OWC技术能够支持由物联网(物联网)和即将到来的5(5G)无线通信系统产生的大规模连接产生的高流量。随着OWC和RF的特点是互补的,组合的应用被认为是支持5G及其超出通信系统的有希望的方法。混合射频/光学和光学/光学无线系统提供了恢复各个系统的局限的优异解决方案,以及提供各种技术的正种功能。 RF /光学无线混合系统包括RF和基于光学的无线技术,而光学/光学无线混合系统由两种或更多种类型的OWC技术组成。无线系统的共同部署可以在各个网络的吞吐量,可靠性和能效方面提高系统性能。本研究调查了关于光无线混合网络的最新技术和关键研究方向,是专门针对本主题的第一个广泛调查。我们提供了在光纤无线混合网络上的现有文献的技术概述,例如RF /光学/光学系统。我们考虑基于RF的宏小区,小型电池,无线保真度和蓝牙,以及用于混合系统的不同组合的光学可见光通信,光保真度,光学相机通信和自由空间光通信技术。此外,我们考虑用于混合声学/光学系统的水下声学通信。混合系统带来的机会详细介绍。我们概述了需要解决的重要挑战,以便为5G和IOT范例进行5G和IOT范例进行光学无线混合网络系统的成功部署。

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