Hybrid Visible-Light/RF Communication System for Mission-Critical IoT Applications

Waled Gheth, B. Adebisi, M. Ijaz, Laith Farhan, Georgina Harris
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引用次数: 2

Abstract

The mission-critical internet of things (IoT) has recently evolved to cover many applications such as e-health, power distribution systems, industrial and smart homes and cities. Such applications are anticipated to work every time without any fail which requires a constant data transmission. Hybrid communication systems are often used to provide reliable transmission, improve the performance of communication systems and provide better mobility to the end users. Contrary to the previous works on this area which discuss the implementation of relays between different communication links, the authors of this paper study the performance of cooperative visible-light communication (VLC) and radiofrequency (RF) communication systems with the presence of AF relay. The performance of the system under consideration is analyzed in terms of ergodic capacity. A mathematical method is exploited for this hybrid system to formulate the overall capacity of the proposed system by using the characteristics of the VLC and RF channels. The analytical results of the derived expression are verified by Monte Carlo simulations throughout this letter. The authors also investigate the effect of the several system parameters on its performance. The results revealed that the length of each link has a negative impact on the system performance. It was also found that the capacity of the integrated VLC/RF system is significantly improved by increasing the AF relay gain.
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用于关键任务物联网应用的混合可见光/射频通信系统
任务关键型物联网(IoT)最近已经发展到涵盖许多应用,如电子医疗、配电系统、工业和智能家居以及城市。这样的应用程序预计每次都能正常工作,没有任何故障,这需要持续的数据传输。混合通信系统通常用于提供可靠的传输,提高通信系统的性能,并为最终用户提供更好的移动性。与以往讨论在不同通信链路之间实现中继的工作不同,本文的作者研究了存在AF中继的可见光通信(VLC)和射频(RF)通信系统的协同性能。从遍历容量的角度分析了所考虑的系统的性能。利用VLC和RF信道的特性,利用数学方法对该混合系统进行了综合计算。本文通过蒙特卡罗模拟验证了推导表达式的解析结果。研究了系统各参数对其性能的影响。结果表明,各链路的长度对系统性能有负面影响。通过增加AF中继增益,VLC/RF集成系统的容量得到了显著提高。
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