Weighted Gauss-Seidel Precoder for Downlink Massive MIMO Systems  被引量:2

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作  者:Jun-Yong Jang Won-Seok Lee Jae-Hyun Ro Young-Hawn You Hyoung-Kyu Song 

机构地区:[1]Department of Information and Communication Engineering,Convergence Engineering for Intelligent Drone,Sejong University,Seoul,05006,Korea [2]Department of Computer Engineering,Sejong University,Seoul,05006,Korea

出  处:《Computers, Materials & Continua》2021年第5期1729-1745,共17页计算机、材料和连续体(英文)

基  金:supported by the MSIT(Ministry of Science and ICT),Korea,under the ITRC(Information Technology Research Center)support program(IITP-2019-2018-0-01423);supervised by the IITP(Institute for Information&communications Technology Promotion);supported by Basic Science Research Program through the National Research Foundation of Korea(NRF)funded by the Ministry of Education(2020R1A6A1A03038540).

摘  要:In this paper,a novel precoding scheme based on the Gauss-Seidel(GS)method is proposed for downlink massive multiple-input multiple-output(MIMO)systems.The GS method iteratively approximates the matrix inversion and reduces the overall complexity of the precoding process.In addition,the GS method shows a fast convergence rate to the Zero-forcing(ZF)method that requires an exact invertible matrix.However,to satisfy demanded error performance and converge to the error performance of the ZF method in the practical condition such as spatially correlated channels,more iterations are necessary for the GS method and increase the overall complexity.For efficient approximation with fewer iterations,this paper proposes a weighted GS(WGS)method to improve the approximation accuracy of the GS method.The optimal weights that accelerate the convergence rate by improved accuracy are computed by the least square(LS)method.After the computation of weights,the different weights are applied for each iteration of the GS method.In addition,an efficient method of weight computation is proposed to reduce the complexity of the LS method.The simulation results show that bit error rate(BER)performance for the proposed scheme with fewer iterations is better than the GS method in spatially correlated channels.

关 键 词:Massive MIMO GS matrix inversion complexity WEIGHT 

分 类 号:TN9[电子电信—信息与通信工程]

 

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