The emerging Non-Terrestrial Networks (NTNs) can aid to provide 5G and beyond services everywhere and anytime. However, the vast emergence of NTN systems will introduce an unseen interference to both the existing satellite systems and Terrestrial Networks (TNs). For that, there is a need for novel ideas on how to efficiently utilize the co-existing systems with the ever-increasing competition on scarce spectrum resources. Dynamic Spectrum Sharing (DSS) is a promising technique in which different systems can operate on the same spectrum, thus increasing the spectrum efficiency and offering better coverage for the users. In this paper, we present a centralized scheme for achieving coordinated DSS to protect the primary TN while providing NTN with sufficient resources. The scheme is evaluated by system simulations in a scenario with a TN and low earth orbit satellite. The results reveal that in a low traffic demand situation, the primary TN users are not affected negatively while the NTN can provide service to the rural area. In high-demand traffic situations, the peak performance of the TN inevitably suffers but the TN cell edge and NTN users' performance is improved.
翻译:新兴的非地面网络(NTNs)可助力实现随时随地提供5G及未来服务。然而,NTN系统的大规模涌现将对现有卫星系统和地面网络(TNs)引入前所未有的干扰。为此,面对稀缺频谱资源日益激烈的竞争,亟需创新思路以高效利用共存的网络系统。动态频谱共享(DSS)是一种有前景的技术,允许多种系统在相同频谱上运行,从而提升频谱效率并为用户提供更优覆盖。本文提出一种集中式方案,用于实现协调DSS,以保护主地面网络的同时为非地面网络提供充足资源。该方案通过包含地面网络与低地球轨道卫星的场景进行系统仿真评估。结果表明:在低流量需求场景下,主地面网络用户未受负面影响,而非地面网络可为农村地区提供服务;在高流量需求场景下,地面网络的峰值性能虽不可避免地下降,但地面网络小区边缘用户与非地面网络用户的性能得到改善。