1.电信科学技术研究院,北京 100083
2.中信科移动通信技术股份有限公司,北京 100083
3.无线移动通信国家重点实验室,北京 100083
[ "林家贤(2001- ),男,电信科学技术研究院硕士生,中信科移动通信技术股份有限公司工程师,主要研究方向为卫星通信、多址接入。" ]
[ "关鹃(1991- ),女,中信科移动通信技术股份有限公司工程师,主要研究方向为卫星物理层技术。" ]
[ "康绍莉(1974- ),女,博士,中信科移动通信技术股份有限公司移动系统研究高级技术专家,无线移动通信国家重点实验室工程师,主要研究方向为多址接入、频谱共享、卫星通信及6G等。" ]
[ "陈山枝(1969- ),男,博士,无线移动通信国家重点实验室主任,主要研究方向为B5G和6G、车联网、卫星移动通信等。" ]
收稿:2025-02-28,
修回:2025-05-05,
录用:2025-06-10,
纸质出版:2025-08-20
移动端阅览
林家贤,关鹃,康绍莉等.基于NTN的容量增强技术研究[J].电信科学,2025,41(08):101-114.
LIN Jiaxian,GUAN Juan,KANG Shaoli,et al.Research on capacity enhancement technology based on NTN[J].Telecommunications Science,2025,41(08):101-114.
林家贤,关鹃,康绍莉等.基于NTN的容量增强技术研究[J].电信科学,2025,41(08):101-114. DOI: 10.11959/j.issn.1000-0801.2025174.
LIN Jiaxian,GUAN Juan,KANG Shaoli,et al.Research on capacity enhancement technology based on NTN[J].Telecommunications Science,2025,41(08):101-114. DOI: 10.11959/j.issn.1000-0801.2025174.
卫星通信作为全球通信网络的关键组成部分,在偏远地区覆盖与应急通信中具有不可替代性。然而,手机直连卫星等新兴应用的发展对系统容量提出了更高要求,亟须解决波束规模化发展、波束内用户数的增长及用户速率的提升等技术挑战。为此,3GPP自Rel-18版本开展覆盖增强与容量增强技术研究。以3GPP在研的基于正交覆盖码(orthogonal covering code,OCC)的上行容量增强方案为基础,系统分析其技术路径并通过仿真评估其性能,同时探讨下行容量增强的标准化方向,为5G非地面网络(non terrestrial network,NTN)后续演进提供技术参考,并进一步提出基于图样分割多址接入(pattern division multiple access,PDMA)的非正交容量增强策略,从多用户接入效率与频谱资源利用维度突破传统正交多址限制,为6G NTN的超大容量需求奠定理论与技术基础。研究结果表明,通过对资源利用的优化,卫星通信系统容量得到显著提升,能够有效支撑未来NTN的规模化部署。
Satellite communication
as a key component of the global communication network
is irreplaceable in providing coverage in remote areas and for emergency communications. However
the development of emerging applications such as direct satellite connections for mobile phones has raised higher requirements for system capacity
urgently necessitating solutions to technical challenges such as scalable beam development
increased user numbers within beams
and improved user rates. To address this
3GPP had initiated research on coverage enhancement and capacity enhancement technologies starting from the Rel-18 version. Based on the uplink capacity enhancement scheme using orthogonal covering codes (OCC) that is currently under research by 3GPP
the technical pathway was systematically analyzed and its performance was evaluated through simulations. Additionally
the standardization direction for downlink capacity enhancement was explored
providing technical reference for the subsequent evolution of 5G non-terrestrial network (NTN). Furthermore
a non-orthogonal capacity enhancement strategy based on pattern division multiple access (PDMA) was proposed
breaking through the traditional orthogonal multiple access limitations from the perspectives of multi-user access efficiency and spectrum resource utilization
and laying a theoretical and technical foundation for meeting the ultra-large capacity demands of 6G NTN. The research results indicate that through the optimization of resource utilization
the capacity of satellite communication systems can be significantly enhanced
effectively supporting the large-scale deployment of NTN in the future.
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