论文标题
分析通道模型和链接设计优化,用于地面自由空间光学通信网络
Analytical Channel Model and Link Design Optimization for Ground-to-HAP Free-Space Optical Communication Networks
论文作者
论文摘要
集成高空平台(HAP)和自由空间光学(FSO)通信是为下一代无线网络建立高数据速率航空链接的有前途解决方案。但是,由于悬停HAPS的方向偏差而导致的光束偏移的指向误差和指向误差和到达角度(AOA)的实际局限性使实施基于HAP的FSO链接的挑战。对于地面到 - fso链接,本文得出了可拖动的,封闭形式的统计通道模型,以简化此类系统的最佳设计。所提出的模型包括大气湍流状态(即对数正常和伽马 - 伽马)的综合作用,指向误差引起的几何损失,指向由光束徘徊引起的抖动方差,检测器孔径大小,束宽度,束宽度和接收光束的AOA波动。通过进行蒙特卡洛模拟来证实分析表达式。此外,得出了在不同的湍流状态下考虑的链接的中断概率的闭合表达式。进行详细的分析以优化传输激光束和接收器的视野,以最大程度地减少在不同通道条件下的中断概率。获得的分析结果可以应用于查找最佳参数值并设计地面到-HAP FSO链接,而无需诉诸于耗时的模拟。
Integrating high altitude platforms (HAPs) and free-space optical (FSO) communications is a promising solution to establish high data rate aerial links for the next-generation wireless networks. However, practical limitations such as pointing errors and angle-of-arrival (AOA) fluctuations of the optical beam due to the orientation deviations of hovering HAPs make it challenging to implement HAP-based FSO links. For a ground-to-HAP FSO link, tractable, closed-form statistical channel models are derived in this paper to simplify the optimal design of such systems. The proposed models include the combined effects of atmospheric turbulence regimes (i.e., log-normal and gamma-gamma), pointing error induced geometrical loss, pointing jitter variance caused by beam wander, detector aperture size, beam-width, and AOA fluctuations of the received optical beam. The analytical expressions are corroborated by performing Monte-Carlo simulations. Furthermore, closed-form expressions for the outage probability of the considered link under different turbulence regimes are derived. Detailed analysis is carried out to optimize the transmitted laser beam and the field-of-view of the receiver for minimizing outage probability under different channel conditions. The obtained analytical results can be applied to finding the optimal parameter values and designing ground-to-HAP FSO links without resorting to time-consuming simulations.