论文标题
LEO卫星网络的基于图的可自定义切换框架
A Graph-Based Customizable Handover Framework for LEO Satellite Networks
论文作者
论文摘要
预计未来的卫星网络将具有数千个低地球轨道(LEO)卫星以非常高速的地球运行。用户设备(UE)直接与LEO卫星通信会经常进行移交。由于高频的频率以及多个LEO卫星作为移交目标,管理移交过程变得复杂。此外,随着UE和LEO卫星之间的通信链接的状态随卫星的可见性期而变化,在正确的时间启动移交将显着影响所提供的通信的服务质量(QoS)。为了解决此问题,这项工作提出了一个基于图形的可自定义切换框架,该框架在选择维护QoS的交换序列时考虑了切换时机和目标。设计基于时间的图表,顶点代表一定时间段内卫星的实例,而边缘的权重是可自定义的切换标准(即,这项工作的数据速率和延迟)。通过找到图表中的最短路径获得了满足所需QoS的交接的适当顺序和时机。在Starlink I期星座上进行的讨论和模拟显示了所提出的移交框架的复杂性和性能优势较低。
Future satellite networks are expected to have thousands of low Earth orbit (LEO) satellites orbiting Earth at very high speeds. User equipment (UE) communicating directly with LEO satellites will experience frequent handovers. Managing the handover process is complicated due to the high frequency of handovers and the availability of multiple LEO satellites as handover targets. In addition, as the status of the communication link between a UE and an LEO satellite varies in accordance with the visibility period of the satellite, initiating handovers at the right time will significantly affect the quality of service (QoS) of the communication provided. To address this problem, this work proposes a graph-based customizable handover framework that considers both the handover timing and target while selecting a handover sequence that maintains QoS. A time-based graph is designed where the vertices represent the satellites' instances over a certain period of time and the edges' weights are the customizable handover criteria (i.e., data rate and delay in this work). The appropriate sequence and timing of handovers that fulfill the required QoS are obtained by finding the shortest path in the graph. Discussion and simulations, which were conducted on the Starlink Phase I constellation, show the low complexity and performance advantages of the proposed handover framework.