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Hilbert-Shaped Magnetic Waveguided Metamaterials for Electromagnetic Coupling Reduction of Microstrip Antenna Array

机译:希尔伯特形状的电磁波导超材料,用于微带天线阵列的电磁耦合减小

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摘要

A novel single-negative magnetic waveguided metamaterial (MTM) is initially proposed based on the Hilbert-shaped complementary electric inductive–capacitive resonator. The MTM element is highly compact due to the Hilbert space-filling curves which considerably enhance the current path in the ground, and exhibits a bandgap attributing to the negative permeability in the vicinity of magnetic resonance. Taking the advantage of these two features, a microstrip antenna array is then designed, fabricated, and measured by embedding a 5$,times,$1 array of the well-engineered MTM elements between two closely spaced $(lambda_{o}/8.08)$ H-plane coupled rectangular patches. Both numerical and experimental results indicate a mutual coupling reduction of more than 9.7 dB. The proposed prescription with electrically small dimensions and high decoupling efficiency opens an avenue to new types of antennas with super performances.
机译:最初基于希尔伯特形互补电感应-电容谐振器提出了一种新颖的单负磁波导超材料(MTM)。由于希尔伯特空间填充曲线大大增强了地面中的电流路径,因此MTM元件高度紧凑,并且在磁共振附近表现出归因于负磁导率的带隙。利用这两个功能的优势,然后通过嵌入5 $,times,$ <来设计,制造和测量微带天线阵列。 / formula>两个紧密间隔的 $(lambda_ {o} /8.08)$ 之间的1个精心设计的MTM元素数组H平面耦合矩形贴片。数值和实验结果均表明相互耦合减小超过9.7 dB。所建议的具有小尺寸尺寸和高去耦效率的规定为新型具有超强性能的天线开辟了道路。

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