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A compact cylindrical-shape microstrip structure with cloaking properties for mutual coupling reduction in array antennas.

机译:紧凑的圆柱形微带结构,具有掩盖特性,可减少阵列天线的相互耦合。

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摘要

A cylindrical-shaped microstrip structure with cloaking properties is presented as a shielding device to reduce the mutual coupling between two patch antennas. The surface comprises of a number of 2-port microstrip (2-PM) elements printed on individual substrates and, to enclose a particular region, several 2-PM elements are interconnected into a cylindrical shape. Each 2-PM element has the capability of coupling an incident EM field on the surface to the adjacent interconnected elements. Then, because the 2-PM elements are connected into a cylindrical shape, the incident EM field is re-radiated from the other interconnected 2-PM elements in a direction away from the transmitter; achieving a behavior similar to a cloak. The prototypes in this dissertation illustrates that this surface has the additional benefit of overcoming many of the manufacturing difficulties of traditional cloaks because microstrip structures are used. To demonstrate this concept, a cylindrical surface operating at 3.89 GHz and a frequency reconfigurable surface (consisting of 2-port frequency reconfigurable microstrip elements (2-PFRM)) operating at 3.68 GHz and 3.89 GHz is simulated in HFSS, manufactured and measured in a full anechoic chamber. Moreover, as an application, the cylindrical surface operating at 3.89 GHz is used to reduce the mutual coupling between two patch antennas operating simultaneously at 3.89 GHz. The radiation pattern and the gain of a 2-element array is measured to demonstrate the negligible effects of a cylindrical surface on the far field antenna array parameters. Simulation and measurement results are in good agreement and validate the proposed EM cloak-based surface for applications such as antenna array shielding, radar cross section and communications in complex EM environments.
机译:提出一种具有隐身特性的圆柱形微带结构作为屏蔽设备,以减少两个贴片天线之间的相互耦合。该表面包括印刷在各个基板上的多个2端口微带(2-PM)元件,并且为了包围特定区域,几个2-PM元件互连成圆柱形。每个2-PM元件都具有将表面上的入射EM场耦合到相邻的互连元件的能力。然后,由于将2 PM元件连接成圆柱形,因此入射的EM场会从其他互连的2 PM元件沿远离发射器的方向重新辐射。实现类似斗篷的行为。本文的原型表明,由于使用了微带结构,该表面具有克服传统斗篷许多制造困难的额外好处。为证明这一概念,在HFSS中模拟了工作于3.68 GHz和3.89 GHz的圆柱形表面和工作于3.68 GHz和3.89 GHz的频率可重构表面(由2端口频率可重构微带元件(2-PFRM)组成),并在全消声室。此外,作为一种应用,工作在3.89 GHz的圆柱表面可减少同时工作在3.89 GHz的两个贴片天线之间的相互耦合。测量了2元件阵列的辐射方向图和增益,以证明圆柱表面对远场天线阵列参数的影响可忽略不计。仿真和测量结果非常吻合,并验证了建议的基于EM隐身衣的表面在天线阵列屏蔽,雷达横截面和复杂EM环境中的通信等应用中的应用。

著录项

  • 作者

    Naqvi, Syed Aftab.;

  • 作者单位

    North Dakota State University.;

  • 授予单位 North Dakota State University.;
  • 学科 Electrical engineering.;Electromagnetics.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 60 p.
  • 总页数 60
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:53:29

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