论文标题

基于NR的LEO卫星通信系统中的系统级别的梁跳跃评估

System-Level Evaluation of Beam Hopping in NR-Based LEO Satellite Communication System

论文作者

Zhang, Jingwei, Qin, Dali, Kong, Chuili, Zhao, Feiran, Li, Rong, Wang, Jun, Wang, Ye

论文摘要

卫星通信通过利用低地球轨道(LEO)卫星的使用来通过提供无处不在的无线连接来在未来的通信系统中发挥重要作用。因此,这激发了第三代伙伴关系项目(3GPP)中的工作,以确保非事物网络(NTN)的第五代(5G)新无线电(NR)协议的运行。在本文中,我们考虑了一个基于NR的LEO卫星通信系统,该卫星配备了伪造的阵列天线,可在地面上为用户设备(UES)提供服务。为了减少有效载荷的重量并满足UES的时变交通需求,考虑到交通需求和梁间干扰的有效梁跳跃计划,以共同安排梁和卫星发射功率。然后,基于NR协议,我们在不同的操作频段和流量模型下介绍了LEO卫星系统中梁跳跃方案的第一个系统级评估。仿真结果表明,与基准方案相比,尤其是在避免计划相邻光束的距离限制限制下,可以通过提出的梁跳跃方案实现显着的性能增长。

Satellite communication by leveraging the use of low earth orbit (LEO) satellites is expected to play an essential role in future communication systems through providing ubiquitous and continuous wireless connectivity. This thus has motivated the work in the 3rd generation partnership project (3GPP) to ensure the operation of fifth generation (5G) New Radio (NR) protocols for non-terrestrial network (NTN). In this paper, we consider a NR-based LEO satellite communication system, where satellites equipped with phased array antennas are employed to serve user equipments (UEs) on the ground. To reduce payload weight and meet the time-varying traffic demands of UEs, an efficient beam hopping scheme considering both the traffic demands and inter-beam interference is proposed to jointly schedule beams and satellite transmit power. Then based on NR protocols, we present the first system-level evaluations of beam hopping scheme in LEO satellite system under different operating frequency bands and traffic models. Simulation results indicate that significant performance gains can be achieved by the proposed beam hopping scheme, especially under the distance limit constraint that avoids scheduling adjacent beams simultaneously, as compared to benchmark schemes.

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