论文标题
基于UAV的混合RF-UWOC传输系统的性能分析
Performance Analysis of UAV-based Mixed RF-UWOC Transmission Systems
论文作者
论文摘要
在本文中,我们调查了混合射频无线无线光学通信(RF-UWOC)系统的性能,其中无人驾驶汽车(UAV)作为低空移动空中基地站,将信息传输到自动级别的水下车辆(AUV),通过固定的放大器(auv)或固定的放大器(af)或decdode(af)或decdode&decdode&decdode&decdode&decdode&decdode&decdode(auv)。我们的分析说明了影响系统性能的主要因素,例如无人机高度,气泡,温度梯度,水盐度变化和检测技术。使用固定增益AF继电器和DF继电器,我们得出了某些关键性能指标的封闭形式表达式,例如中断概率(OP),平均位错误率(ABER)和平均通道容量(ACC)。此外,为了获得进一步的见解,还对OP和ABER进行了渐近分析。此外,假设DF继电器,我们为最小化OP的最佳无人机高度提供了分析表达式。仿真结果表明,无人机高度会影响系统性能,并且有一个最佳的高度,可确保最低OP。此外,基于渐近结果,证明固定增益AF继电器和DF继电器的多样性顺序分别由RF链接和UWOC链路的检测技术确定。
In this paper, we investigate the performance of a mixed radio-frequency-underwater wireless optical communication (RF-UWOC) system where an unmanned aerial vehicle (UAV), as a low-altitude mobile aerial base station, transmits information to an autonomous underwater vehicle (AUV) through a fixed-gain amplify-and-forward (AF) or decode-and-forward (DF) relay. Our analysis accounts for the main factors that affect the system performance, such as the UAV height, air bubbles, temperature gradient, water salinity variations, and detection techniques. Employing fixed-gain AF relaying and DF relaying, we derive closed-form expressions for some key performance metrics, e.g., outage probability (OP), average bit error rate (ABER), and average channel capacity (ACC). In addition, in order to get further insights, asymptotic analyses for the OP and ABER are also carried out. Furthermore, assuming DF relaying, we derive analytical expressions for the optimal UAV altitude that minimizes the OP. Simulation results show that the UAV altitude influences the system performance and there is an optimal altitude which ensures a minimum OP. Moreover, based on the asymptotic results, it is demonstrated that the diversity order of fixed-gain AF relaying and DF relaying are respectively determined by the RF link and by the detection techniques of the UWOC link.