Relay-Satellite-Assisted LEO Constellation NOMA Communication System

被引:0
|
作者
Zhang, Xuyang [1 ]
Yue, Xinwei [1 ]
Han, Zhihao [4 ]
Li, Tian [2 ]
Shen, Xia [3 ]
Wang, Yafei [1 ]
Liu, Rongke [4 ,5 ]
机构
[1] Beijing Information Science and Technology University, Ministry of Information Industry, Key Laboratory of Information and Communication Systems, Beijing,100101, China
[2] 54th Research Institute of China Electronics Technology Group Corporation, Shijiazhuang,050081, China
[3] China Academy of Information and Communications Technology (CAICT), Beijing,100191, China
[4] Beihang University, School of Electronic and Information Engineering, Beijing,100191, China
[5] Shenzhen Beihang Emerging Industry Technology Research Institute, Shenzhen,518063, China
基金
中国国家自然科学基金;
关键词
Ant colony optimization - Antenna grounds - Beam forming networks - Convex optimization - Linear programming - Multibeam antennas - Satellite antennas - Satellite communication systems - Satellite relay systems - Solar power satellites;
D O I
10.1109/TAES.2024.3454031
中图分类号
学科分类号
摘要
This article proposes a relay satellite assisted low Earth orbit (LEO) constellation nonorthogonal multiple access combined beamforming (R-NOMA-BF) communication system, where multiple antenna LEO satellites deliver information to ground nonorthogonal users. To measure the service quality, we formulate a resource allocation problem to minimize the second-order difference between the achievable capacity and user request traffic. Based on the above problem, joint optimization for LEO satellite cell assignment factor, NOMA power, and BF vector is taken into account. The optimization variables are analyzed with respect to feasibility and nonconvexity. In addition, we provide a pair of effective algorithms, i.e., Doppler-shift LEO satellite cell-assisted monotonic programming of NOMA with BF vector (D-mNOMA-BF) and ant colony pathfinding-based NOMA exponential cone programming with BF vector (A-eNOMA-BF). Two compromise algorithms regarding the above are also presented. Numerical results show that: 1) D-mNOMA-BF and A-eNOMA-BF algorithms are superior to that of OMA-based BF and polarization multiplexing schemes; 2) with the increasing number of antennas and single satellite power, the R-NOMA-BF system is able to expand users satisfaction; and 3) by comparing various imperfect successive interference cancelation, the performance of A-mNOMA-BF algorithm exceeds D-mNOMA-BF. © 1965-2011 IEEE.
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页码:995 / 1011
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