Sidelobe Nulling by Optimizing Selected Elements in the Linear and Planar Arrays

J. Mohammed, Khalil H. Sayidmarie
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Abstract

Currently, there are significant interests in the antenna arrays that are composed of a large number of elements controlled by an appropriate optimizer for the next generation of wireless communication systems, where the massive multiple-inputs multiple-outputs (MIMO) systems are expected to play a major role in such systems. On the other hand, the interfering signals which are expected to rise dramat-ically in these applications due to the crowded spectrum represent a real challenging issue that limits and causes great degradation in their performances. To achieve an optimum performance, these antenna arrays should be optimized and designed to have maximum gain, narrow beam width, and very low sidelobes or deep nulls. Toward achieving this goal, the overall array performance can be either electronically controlling the design parameters, such as amplitude and/or phase excitations of the individual elements, or mechanically controlling the element positions. This chapter discusses techniques proposed for sidelobe nulling by optimizing the excitations and positions of selected elements in the linear and planar arrays.
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通过优化线性和平面阵列中的选定元素来消除旁瓣
目前,人们对下一代无线通信系统中由适当的优化器控制的大量元件组成的天线阵列非常感兴趣,其中大规模多输入多输出(MIMO)系统有望在此类系统中发挥主要作用。另一方面,在这些应用中,由于频谱拥挤,干扰信号预计会急剧增加,这是一个真正具有挑战性的问题,限制并导致其性能严重下降。为了达到最佳性能,这些天线阵列应该进行优化和设计,使其具有最大增益、窄波束宽度和非常低的副瓣或深空。为了实现这一目标,整体阵列性能可以通过电子方式控制设计参数,例如单个元件的振幅和/或相位激励,或者机械地控制元件位置。本章讨论了通过优化线性和平面阵列中选定元件的激励和位置来消除旁瓣的技术。
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Sidelobe Nulling by Optimizing Selected Elements in the Linear and Planar Arrays Introductory Chapter: Introduction to Array Pattern Optimization Design and Optimization of Photonics-Based Beamforming Networks for Ultra-Wide mmWave-Band Antenna Arrays Array Pattern Based on Integrated Antenna Smart Antenna Systems Model Simulation Design for 5G Wireless Network Systems
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