Optimizing Multiple Beam Patterns for 5G mmWave Phased Array Applications

J. Mohammed
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Abstract

In this paper, a new technique for shaping multiple beam patterns antenna arrays for 5G and beyond wireless massive MIMO communication systems is introduced. The technique aims to concentrate the radio energy in specific coverage areas with a desired shape by optimizing the excitation amplitudes and phases of the array elements. To assess the proposed technique, both genetic algorithm and particle swarm optimization are utilized to optimize the excitation amplitudes and phases of the array elements such that the required number of the beams, their shapes, their directions, their power magnitudes, and the desired sidelobe pattern can be achieved. Simulation results fully confirm the effectiveness of the proposed technique in generating optimized shaped patterns that can be suitably used for distributing the radiation powers over the coverage areas in the mobile communication base stations.
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优化5G毫米波相控阵应用的多波束方向图
本文介绍了一种用于5G及以后无线大规模MIMO通信系统的多波束方向图天线阵列整形新技术。该技术旨在通过优化阵列元件的激励幅度和相位,将无线电能量集中在具有所需形状的特定覆盖区域。为了评估所提出的技术,利用遗传算法和粒子群优化来优化阵列元件的激励幅度和相位,从而可以实现所需的波束数量、波束形状、波束方向、波束功率大小和所需的旁瓣方向图。仿真结果充分证实了所提出的技术在生成优化形状图案方面的有效性,该优化形状图案可以适当地用于在移动通信基站的覆盖区域上分配辐射功率。
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来源期刊
Periodica polytechnica Electrical engineering and computer science
Periodica polytechnica Electrical engineering and computer science Engineering-Electrical and Electronic Engineering
CiteScore
2.60
自引率
0.00%
发文量
36
期刊介绍: The main scope of the journal is to publish original research articles in the wide field of electrical engineering and informatics fitting into one of the following five Sections of the Journal: (i) Communication systems, networks and technology, (ii) Computer science and information theory, (iii) Control, signal processing and signal analysis, medical applications, (iv) Components, Microelectronics and Material Sciences, (v) Power engineering and mechatronics, (vi) Mobile Software, Internet of Things and Wearable Devices, (vii) Solid-state lighting and (viii) Vehicular Technology (land, airborne, and maritime mobile services; automotive, radar systems; antennas and radio wave propagation).
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