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Interaction Between Closely Packed Array Antenna Elements Using Meta-Surface for Applications Such as MIMO Systems and Synthetic Aperture Radars

机译:使用元表面的密排阵列天线元件之间的相互作用,用于MIMO系统和合成孔径雷达等应用

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摘要

The paper presents a technique to enhance the isolation between adjacent radiating elements that is common in densely packed antenna arrays. Such antennas provide frequency beam-scanning capability needed in multiple-input multiple-output (MIMO) systems and synthetic aperture radars. The method proposed here uses a metamaterial decoupling slab (MTM-DS), which is located between radiating elements, to suppress mutual coupling between the elements that would otherwise degrade the antenna efficiency and performance in both the transmit and receive mode. The proposed MTM-DS consists of mirror imaged E-shaped slits engraved on a microstrip patch with inductive stub. Measured results confirm over 9-11GHz with no MTM-DS the average isolation (S-12) is -27dB; however, with MTM-DS the average isolation improves to -38dB. With this technique the separation between the radiating element can be reduced to 0.66(0), where (0) is free space wavelength at 10GHz. In addition, with this technique there is 15% improvement in operating bandwidth. At frequencies of high impedance match of 9.95 and 10.63GHz the gain is 4.52 and 5.40dBi, respectively. Furthermore, the technique eliminates poor front-to-back ratio encountered in other decoupling methods. MTM-DS is also relatively simple to implement. Assuming adequate space is available between adjacent radiators the MTM-DS can be fixed retrospectively on existing antenna arrays, which makes the proposed method versatile.
机译:本文提出了一种技术,以增强在密集封装的天线阵列中常见的相邻辐射元件之间的隔离。这种天线提供了多输入多输出(MIMO)系统和合成孔径雷达所需的频率波束扫描功能。此处提出的方法使用位于辐射元件之间的超材料去耦平板(MTM-DS)来抑制元素之间的相互耦合,否则会降低发射和接收模式下的天线效率和性能。提出的MTM-DS由刻在微带贴上的带感应短线的镜像E形狭缝组成。测量结果证实,在没有MTM-DS的9-11GHz范围内,平均隔离度(S-12)为-27dB;但是,使用MTM-DS时,平均隔离度提高到-38dB。利用这种技术,可以将辐射元件之间的距离减小到0.66(0),其中(0)是10GHz处的自由空间波长。此外,使用这种技术可以将工作带宽提高15%。在9.95和10.63GHz的高阻抗匹配频率下,增益分别为4.52和5.40dBi。此外,该技术消除了其他去耦方法中遇到的较差的前后比。 MTM-DS的实现也相对简单。假设相邻辐射器之间有足够的空间,则MTM-DS可以追溯性地固定在现有天线阵列上,这使得该方法具有通用性。

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