This paper investigates the system outage performance of a useful architecture of two-way hybrid visible light communication/radio frequency (VLC/RF) communication using overlay mode of cooperative cognitive radio network (CCRN). The demand of high data rate application can be fulfilled using VLC link and communication over a wide area of coverage with high reliability can be achieved through RF link. In the proposed architecture, cooperative communication between two licensed user (LU) nodes is accomplished via an aggregation agent (AA). AA can perform like a relay node and in return, it can access the LU spectrum for two-way communications with Internet-of-Things (IoT) device. First, closed form expressions of outage probability of both LU and IoT communication are established. On the basis of these expressions, optimization problems are formulated to achieve minimum outage probability of both LU and IoT network. The impacts of both VLC and RF system parameters on these systems outage probability and throughput are finally shown in simulation results.
翻译:本文调查使用合作认知无线电网络重叠模式的双向双向可见光通信/无线电频率(VLC/RF)通信的有用结构的系统故障性能; 利用VLC链接和高可靠性的广域通信,可以达到高数据率应用的要求; 在拟议的结构中,两个特许用户(LU)节点之间的合作性通信是通过聚合剂(AAA)完成的。 AAA可以像中继节点一样发挥作用,反过来,它可以进入LU频谱,与因特网-Things(IoT)设备进行双向通信。首先,确定了LU和IoT通信的封闭性断电概率表达方式;根据这些表达方式,提出了优化问题,以实现LU和IoT网络的最低断电概率。 VLC和RF系统参数对这些系统断电率和吞电的影响最终在模拟结果中显示出。