基于能效的THz-NOMA系统资源分配算法

TN929.5; 太赫兹(Terahertz,THz)频带与非正交多址接入(Non-Orthogonal Multiple Access,NOMA)技术相结合在实现大规模连接和超高速通信方面有着突出的优势.但是目前关于下行THz-NOMA系统的资源分配问题研究还很少,现有的方案存在算法复杂度高和系统性能低等缺点.以能量效率为优化目标,研究下行THz-NOMA系统的资源分配问题:首先,为了降低用户和子信道间的匹配复杂度,将该问题等效为双边匹配(Two Side Match,TSM)问题,提出了基于TSM的匹配算法;其次,针对子信道间功率分配问题的非凸性,通过将非凸函数转化为两个凸函数的差分,迭代...

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Published in华东理工大学学报(自然科学版) Vol. 49; no. 3; pp. 450 - 456
Main Authors 于海增, 袁伟娜, 孙叔欢, 朱煜
Format Journal Article
LanguageChinese
Published 华东理工大学信息科学与工程学院,上海200237 01.06.2023
Subjects
Online AccessGet full text
ISSN1006-3080
DOI10.14135/j.cnki.1006-3080.20220112005

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Abstract TN929.5; 太赫兹(Terahertz,THz)频带与非正交多址接入(Non-Orthogonal Multiple Access,NOMA)技术相结合在实现大规模连接和超高速通信方面有着突出的优势.但是目前关于下行THz-NOMA系统的资源分配问题研究还很少,现有的方案存在算法复杂度高和系统性能低等缺点.以能量效率为优化目标,研究下行THz-NOMA系统的资源分配问题:首先,为了降低用户和子信道间的匹配复杂度,将该问题等效为双边匹配(Two Side Match,TSM)问题,提出了基于TSM的匹配算法;其次,针对子信道间功率分配问题的非凸性,通过将非凸函数转化为两个凸函数的差分,迭代求解凸子问题得到该问题的解.对于子信道内用户功率分配,推导出了最优功率分配的闭式解.仿真结果表明,本文提出的子信道匹配算法比开关匹配算法复杂度更低,提出的功率分配算法比传统的功率分配算法可实现更高的系统能效.
AbstractList TN929.5; 太赫兹(Terahertz,THz)频带与非正交多址接入(Non-Orthogonal Multiple Access,NOMA)技术相结合在实现大规模连接和超高速通信方面有着突出的优势.但是目前关于下行THz-NOMA系统的资源分配问题研究还很少,现有的方案存在算法复杂度高和系统性能低等缺点.以能量效率为优化目标,研究下行THz-NOMA系统的资源分配问题:首先,为了降低用户和子信道间的匹配复杂度,将该问题等效为双边匹配(Two Side Match,TSM)问题,提出了基于TSM的匹配算法;其次,针对子信道间功率分配问题的非凸性,通过将非凸函数转化为两个凸函数的差分,迭代求解凸子问题得到该问题的解.对于子信道内用户功率分配,推导出了最优功率分配的闭式解.仿真结果表明,本文提出的子信道匹配算法比开关匹配算法复杂度更低,提出的功率分配算法比传统的功率分配算法可实现更高的系统能效.
Author 于海增
袁伟娜
孙叔欢
朱煜
AuthorAffiliation 华东理工大学信息科学与工程学院,上海200237
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ZHU Yu
YU Haizeng
YUAN Weina
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Keywords 资源分配算法
功率分配算法
非正交多址接入
能量效率
太赫兹通信
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Snippet TN929.5; 太赫兹(Terahertz,THz)频带与非正交多址接入(Non-Orthogonal Multiple Access,NOMA)技术相结合在实现大规模连接和超高速通信方面有着突出的优势.但是目前关于下...
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