In this paper, we propose an approach for constructing a multi-layer multi-orbit space information network (SIN) to provide high-speed continuous broadband connectivity for space missions (nanosatellite terminals) from the emerging space-based Internet providers. This notion has been motivated by the rapid developments in satellite technologies in terms of satellite miniaturization and reusable rocket launch, as well as the increased number of nanosatellite constellations in lower orbits for space downstream applications, such as earth observation, remote sensing, and Internet of Things (IoT) data collection. Specifically, space-based Internet providers, such as Starlink, OneWeb, and SES O3b, can be utilized for broadband connectivity directly to/from the nanosatellites, which allows a larger degree of connectivity in space network topologies. Besides, this kind of establishment is more economically efficient and eliminates the need for an excessive number of ground stations while achieving real-time and reliable space communications. This objective necessitates developing suitable radio access schemes and efficient scalable space backhauling using inter-satellite links (ISLs) and inter-orbit links (IOLs). Particularly, service-oriented radio access methods in addition to software-defined networking (SDN)-based architecture employing optimal routing mechanisms over multiple ISLs and IOLs are the most essential enablers for this novel concept. Thus, developing this symbiotic interaction between versatile satellite nodes across different orbits will lead to a breakthrough in the way that future downstream space missions and satellite networks are designed and operated.
翻译:在本文中,我们提出建立一个多层多轨道空间信息网络(SIN)的方法,以便从新兴的天基互联网供应商中为空间飞行任务(nano卫星终端)提供高速连续宽带连接,这一理念的动因是卫星技术在卫星微型化和可再使用的火箭发射方面的迅速发展,以及低轨道空间下游应用(如地球观测、遥感和物联网)的超小型卫星星座数量增多,从而导致空间下游应用,如地球观测、遥感和物联网(IoT)数据收集。具体来说,天基互联网供应商,如Starlink、OWeb和SES O3b等,可以直接与/从超小型卫星直接进行宽带连接(nano卫星终端终端),从而在空间网络结构方面实现更大程度的连通性。此外,这种建立更加经济高效,消除了对过多地面站的需求,同时实现实时和可靠的空间通信。 这一目标需要制定适当的无线电接入计划和高效的可扩展性空间反向新空间。使用星际链接(ISLs)和跨轨道链接(ISL)和SL)的SLSLM)网络链接等天基上直接连接的天基网络连接(IS-SLSLSLSLSLSLSL)网络上设计的最优化的系统运行中,在这种基础结构中将使用最优化的、最优化的、再使用这种最先进的无线电推进式的轨道访问机制。