数字通信与网络(英文)2024,Vol.10Issue(1) :94-100.DOI:10.1016/j.dcan.2022.10.008

Intelligent reflecting surface for sum rate enhancement in MIMO systems

Chan-Yeob Park Ji-Sung Jung Yeong-Rong Lee Beom-Sik Shin Hyoung-Kyu Song
数字通信与网络(英文)2024,Vol.10Issue(1) :94-100.DOI:10.1016/j.dcan.2022.10.008

Intelligent reflecting surface for sum rate enhancement in MIMO systems

Chan-Yeob Park 1Ji-Sung Jung 1Yeong-Rong Lee 1Beom-Sik Shin 1Hyoung-Kyu Song1
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作者信息

  • 1. Department of Information and Communication Engineering,Sejong University,Seoul,Gwangjin-gu,Gunja-dong 98,Republic of Korea;Department of Convergence Engineering for Intelligent Drone,Sejong University,Seoul,Gwangjin-gu,Gunja-dong 98,Republic of Korea
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Abstract

The research for the Intelligent Reflecting Surface(IRS)which has the advantages of cost and energy efficiency has been studied.Channel capacity can be effectively increased by appropriately setting the phase value of IRS elements according to the channel conditions.However,the problem of obtaining an appropriate phase value of IRS is difficult to solve due to the non-convex problem.This paper proposes an iterative algorithm for the alternating optimal solution in the Single User Multiple-Input-Multiple-Output(SU-MIMO)systems.The proposed iterative algorithm finds an alternating optimal solution that is the phase value of IRS one by one.The results show that the proposed method has better performance than that of the randomized IRS systems.The number of iterations for maximizing the performance of the proposed algorithm depends on the channel state between the IRS and the receiver.

Key words

Intelligent reflecting surface/MIMO/Sum rate

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基金项目

MSIT(Ministry of Science and ICT),Korea,under the ITRC(Information Technology Research Center)support program(IITP-2022-2018-0-01423)

IITP(Institute for Information & Communications Technology Planning &Evaluation)()

Basic Science Research Program through the National Research Foundation of Korea(NRF)funded by the Ministry of Education(2020R1A6A1A03038540)

出版年

2024
数字通信与网络(英文)

数字通信与网络(英文)

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参考文献量21
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