This paper designs a novel ground-to-air communication scheme to serve unmanned aerial vehicles (UAVs) through legacy terrestrial base stations (BSs). In particular, a tractable coordinated multi-point (CoMP) transmission based on the geometry of Poisson-Delaunay triangulation is developed, which provides reliable and seamless connectivity for UAVs. An effective dynamic frequency allocation scheme is designed to eliminate inter-cell interference by using the theory of circle packing. For exact performance evaluation, the handoff probability of a typical UAV is characterized, and then the coverage probability with handoffs is attained. Simulation and numerical results corroborate that the proposed scheme outperforms the conventional CoMP scheme with three nearest cooperating BSs in terms of handoff and coverage probabilities. Moreover, as each UAV has a fixed and unique CoMP BS set, it avoids the real-time dynamic BS searching process, thus reducing the feedback overhead.
翻译:本文设计了一个新的地对空通信计划,通过遗留地面基地站为无人驾驶飞行器(无人驾驶飞行器)提供服务,特别是根据Poisson-Delaunay三角对地测量法开发了可移植协调多点传输,为无人驾驶飞行器提供了可靠和无缝的连接;设计了一个有效的动态频率分配计划,通过使用圆圈包装理论消除细胞间干扰;对于精确的绩效评估,对典型无人驾驶飞行器的搭接概率进行了定性,然后实现了搭接的概率。模拟和数字结果证实,拟议的计划在手和覆盖概率方面超过了常规多点传输计划,与三个最密切的合作型组合相比,在手动和覆盖概率方面超过了常规的多点传输计划。此外,由于每个无人驾驶飞行器都有固定和独特的CoMP BS组合,因此避免实时动态BS搜索过程,从而减少了反馈管理。