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Isolation enhancement of densely packed array antennas with periodic MTM-photonic bandgap for SAR and MIMO systems

机译:具有周期性MTM-光子带隙的SAR和MIMO系统的密集阵列天线的隔离增强

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摘要

A metamaterial photonic bandgap (MTM-PBG) periodic structure is used as a decoupling frame to improve the isolation between transmit-receive (T/R) sections of the densely packed array antenna in synthetic aperture radar (SAR) and multiple-input-multiple-output (MIMO) systems. With this technique the MTM-PBG structure is shown to effectively suppress surface wave propagations between the T/R array antennas by an average of 12 dB. MTM-PBG layer comprises a periodic arrangement of dielectric circles etched in the cross-shaped microstrip frame that is inserted between the radiating elements. Unlike other recently reported methods, the advantages of the proposed technique are: (i) simplicity; (ii) cost effectiveness as there is no need for short-circuited via-holes or three-dimensional metal walls; and (iii) can be retrofitted in existing array antennas. The proposed T/R array antennas were designed to operate over an arbitrary frequency range (9.25-11 GHz) with a fractional bandwidth of 17.28%. With this technique (i) the side-lobes are reduced; (ii) there is minimal effect on the gain performance; and (iii) the minimum edge-to-edge gap between adjacent radiating elements can be reduced to 0.15 lambda at 9.25 GHz.
机译:使用超材料光子带隙(MTM-PBG)周期结构作为去耦框架,以改善合成孔径雷达(SAR)和多输入多输出中的密集阵列天线的发射(T / R)部分之间的隔离输出(MIMO)系统。通过这种技术,显示了MTM-PBG结构可以有效地将T / R阵列天线之间的表面波传播平均抑制12 dB。 MTM-PBG层包括在圆形微带框架中蚀刻的电介质圆的周期性排列,该框架插入在辐射元件之间。与其他最近报道的方法不同,所提出的技术的优点是:(i)简单; (ii)具有成本效益,因为不需要短路的通孔或三维金属壁; (iii)可以在现有阵列天线中进行改装。提议的T / R阵列天线被设计为可在任意频率范围(9.25-11 GHz)上以17.28%的分数带宽工作。使用这种技术(i)旁瓣减少; (ii)对收益表现的影响极小; (iii)在9.25 GHz时,相邻辐射元件之间的最小边到边间隙可以减小到0.15λ。

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