Providing high-speed Internet service using satellite network has attracted researchers from both academia and industry mainly due to the characteristics of Low Earth Orbit (LEO) satellite networks such as global coverage, scalability, and lower transmission delay. With the recent advancements in the Software-Defined Network (SDN), implementation of SDN in Non-Terrestrial Networks (NTN) can help to achieve the set goals for 5G and beyond networks. Since satellite networks have a distinct architecture, some of the traditional protocols no longer remain useful. Therefore, to satisfy the diverse Quality of Service (QoS) requirements for a variety of applications, we propose a novel and centralized QoS-aware routing algorithm, called fybrrLink in which the global view of the network in SDN is utilized. We implement a modified Bresenham's algorithm and Dijkstra's algorithm to find the optimal path in a significantly reduced computation time. Also, taking advantage of the deterministic satellite constellation, we propose a flow rule transfer algorithm and a topology monitoring algorithm. Further, fybrrLink is evaluated with multiple NS3 simulations, and results confirm its supremacy over other state-of-the-art algorithms.
翻译:利用卫星网络提供高速互联网服务吸引了学术界和工业界的研究人员,这主要是由于低地球轨道卫星网络的特点,例如全球覆盖范围、可扩缩性以及较低的传输延迟等低地球轨道卫星网络的特点。随着软件定义网络(SDN)最近的进展,在非地球网络(NTN)中实施SDN可以帮助实现5G网络和网络以外的既定目标。由于卫星网络有一个独特的结构,一些传统协议不再有用。因此,为了满足各种应用的多种服务质量要求,我们提出了一种新型和集中的Qos-aware路由算法,称为fybrrLink,其中利用SDN网络的全球观点。我们实施了经修改的Bresenham的算法和Dijkstra的算法,以便在大大缩短的计算时间内找到最佳路径。此外,利用确定性卫星星座,我们提议了流动规则传输算法和地形监测算法。此外,Fybrlink正在用多种NS3高级性算法来评估其其他州级的算法。我们用多种NS3模拟算法来确认其结果。