Bravo Alvarez Lisandra, Montejo-Sánchez Samuel, Rodríguez-López Lien, Azurdia-Meza Cesar, Saavedra Gabriel
Department of Electrical Engineering, Universidad de Concepción, Edmundo Larenas 219, Concepción 4030000, Chile.
Programa Institucional de Fomento a la Investigación, Desarrollo e Innovación, Universidad Tecnológica Metropolitana, Ignacio Valdivieso 2409, Santiago 8940000, Chile.
Sensors (Basel). 2023 Aug 30;23(17):7545. doi: 10.3390/s23177545.
The expectation for communication systems beyond 5G/6G is to provide high reliability, high throughput, low latency, and high energy efficiency services. The integration between systems based on radio frequency (RF) and visible light communication (VLC) promises the design of hybrid systems capable of addressing and largely satisfying these requirements. Hybrid network design enables complementary cooperation without interference between the two technologies, thereby increasing the overall system data rate, improving load balancing, and reducing non-coverage areas. VLC/RF hybrid networks can offer reliable and efficient communication solutions for Internet of Things (IoT) applications such as smart lighting, location-based services, home automation, smart healthcare, and industrial IoT. Therefore, hybrid VLC/RF networks are key technologies for next-generation communication systems. In this paper, a comprehensive state-of-the-art study of hybrid VLC/RF networks is carried out, divided into four areas. First, indoor scenarios are studied considering lighting requirements, hybrid channel models, load balancing, resource allocation, and hybrid network topologies. Second, the characteristics and implementation of these hybrid networks in outdoor scenarios with adverse conditions are analyzed. Third, we address the main applications of hybrid VLC/RF networks in technological, economic, and socio-environmental domains. Finally, we outline the main challenges and future research lines of hybrid VLC/RF networks.
对5G/6G之后通信系统的期望是提供高可靠性、高吞吐量、低延迟和高能效服务。基于射频(RF)和可见光通信(VLC)的系统集成有望设计出能够满足并在很大程度上满足这些要求的混合系统。混合网络设计实现了两种技术之间的互补协作且互不干扰,从而提高了整体系统数据速率,改善了负载均衡,并减少了信号盲区。VLC/RF混合网络可为智能照明、基于位置的服务、家庭自动化、智能医疗和工业物联网等物联网(IoT)应用提供可靠且高效的通信解决方案。因此,混合VLC/RF网络是下一代通信系统的关键技术。本文对混合VLC/RF网络进行了全面的最新研究,分为四个方面。首先,研究室内场景,考虑照明要求、混合信道模型、负载均衡、资源分配和混合网络拓扑。其次,分析这些混合网络在恶劣条件下室外场景中的特性和实现方式。第三,探讨混合VLC/RF网络在技术、经济和社会环境领域的主要应用。最后,概述混合VLC/RF网络的主要挑战和未来研究方向。