5G及以后网络的自适应到达方向估计算法

Adam Mohamed Ahmed Abdo, A. Mohamed, M. H. M. Nerma, Sara Yahia Altahir Mohamed, A. Mohammed
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引用次数: 0

摘要

多用户多输入多输出(MU- MIMO)系统通过采用可估计副瓣信号方向的到达方向(DOA)技术,可以为蜂窝网络提供可观的性能。因此,本文提出了一种不同的自适应DOA算法,在提高通信网络性能的同时最大限度地减少干扰。同时,对多信号分类(MUSIC)、最小范数(Min-Norm)、最小方差无失真响应(MVDR)和Bartlett算法等DOA算法在估计角度和峰值功率谱方面进行了广泛的研究和比较。为此,采用均匀线性阵列(ULA)天线对输入的传感器信号进行权向量的构造。此外,本文还比较了天线单元数和入射信号角度下的DOA算法。仿真结果表明,两种算法在扫描角度精度上基本一致。然而,为了保证波束宽度,所有算法都有不同的峰值功率值。此外,结果表明,不同天线单元数的DOA算法对指向性和增益有显著影响。今后,这项工作可以扩展到毫米波通信的更高频率,大量的天线,可以满足第五代(5G)网络的要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adaptive Direction of Arrival Estimation Algorithms for 5G Network and Beyond
Multiuser-multiple input multiple output (MU- MIMO) systems can provide a substantial performance for cellular networks by applying direction of arrival (DOA) technique, in which the direction of sidelobe signals can be estimated. Therefore, this paper presents a different adaptive DOA algorithms where the performance of communication networks can be enhanced, in the meantime the minimizing interferences. Meanwhile, The DOA algorithm such as multi signal classification (MUSIC), minimum norm (Min-Norm), minimum variance distortionless response (MVDR) and Bartlett algorithms are studied and compared extensively regarding the estimation angles and peak power spectrum. In this regard, uniform linear array (ULA) antenna is employed to construct the weight vector for incoming sensor signals. Furthermore, this paper compares the DOA algorithms concerning the number of antenna elements as well as the incoming signal angles. The simulation results approve that the algorithms are likely have the same performance in accuracy of scanning angles. However, it is realized that all algorithms have different peak power values in order to beamwidth. Moreover, the results indicate that the DOA algorithms with the different number of antenna elements have a significant impact on a directivity and gain. Hereafter, this work can be extended to higher frequency of mmWave communication with massive number of antenna, which can meet the requirement of fifth generation (5G) network.
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