论文标题

近距离通信(NS-COM):空气空间集​​成网络(Sagin)的新政权

Near Space Communications (NS-COM): A New Regime in Space-Air-Ground Integrated Network (SAGIN)

论文作者

Xiao, Zhenyu, Mao, Tianqi, Han, Zhu, Xia, Xiang-Gen

论文摘要

近距离平台站(NSP)的技术创新促进了近空间通信(NS-COM)网络,已成为下一代太空空气地面集成网络(SAGIN)的必不可少的部分,这些网络(Sagin)促进了无处不在的覆盖范围和宽带数据传输。本文旨在提供NS-COM的全面概述。首先,我们研究了NS-COM与现有的陆地细胞网络以及基于卫星和无人驾驶的水车(UAV)基于卫星的通信网络之间的差异,随后是对NS-COM开发的综述。然后,我们探讨NS-COM关于平台和近空间的传播环境的独特特征。确定了NS-COM的主要问题,这是由于非常长的传输距离,NSP上的通信有效载荷的局限性以及近空间的复杂大气构成所致。然后,讨论了NS-COM的各种应用程序方案,也将揭示特殊的技术要求,从收发器设计(例如收发器设计)到上层方面,例如计算卸载和NSPS位置。此外,我们通过将彼此视为干扰器或合作者来研究NS-COM和地面网络的共存。最后,我们从频谱使用的角度列出了几种NS-COM的潜在技术,并强调了它们未来研究的技术挑战。

Precipitated by the technological innovations of the near-space platform stations (NSPS), the near space communication (NS-COM) network has emerged as an indispensable part of the next-generation space-air-ground integrated network (SAGIN) that facilitates ubiquitous coverage and broadband data transfer. This paper aims to provide a comprehensive overview of NS-COM. Firstly, we investigate the differences between NS-COM and the existing terrestrial cellular networks as well as satellite-based and unmanned-aerial-vehicle (UAV)-based communication networks, which is followed by a review of the NS-COM development. Then, we explore the unique characteristics of NS-COM regarding the platforms and the propagation environment of the near space. The main issues of NS-COM are identified, resulted from the extremely long transmission distance, limitations of the communication payloads on NSPS and complex atmospheric constitution of the near space. Then various application scenarios of NS-COM are discussed, where the special technical requirements are also revealed, from the physical-layer aspect like transceiver design to the upper-layer aspect like computational offloading and NSPS placement. Furthermore, we investigate the co-existence of NS-COM and ground networks by treating each other as interferers or collaborators. Finally, we list several potential technologies for NS-COM from the perspective of spectrum usage, and highlight their technical challenges for future research.

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