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A Near-Zero Refractive Index Meta-Surface Structure for Antenna Performance Improvement

机译:用于天线性能改善的近零折射率元表面结构

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摘要

A new meta-surface structure (MSS) with a near-zero refractive index (NZRI) is proposed to enhance the performance of a square loop antenna array. The main challenge to improve the antenna performance is increment of the overall antenna volume that is mitigated by assimilating the planar NZRI MSS at the back of the antenna structure. The proposed NZRI MSS-loaded CPW-fed (Co-Planar Waveguide) four-element array antenna is designed on ceramic-bioplastic-ceramic sandwich substrate using high-frequency structure simulator (HFSS), a finite-element-method-based simulation tool. The gain and directivity of the antenna are significantly enhanced by incorporating the NZRI MSS with a 7 × 6 set of elements at the back of the antenna structure. Measurement results show that the maximum gains of the antenna increased from 6.21 dBi to 8.25 dBi, from 6.52 dBi to 9.05 dBi and from 10.54 dBi to 12.15 dBi in the first, second and third bands, respectively. The effect of the slot configuration in the ground plane on the reflection coefficient of the antenna was analyzed and optimized. The overall performance makes the proposed antenna appropriate for UHFFM (Ultra High Frequency Frequency Modulation) telemetry-based space applications as well as mobile satellite, microwave radiometry and radio astronomy applications.
机译:提出了一种新的具有接近零折射率(NZRI)的超表面结构(MSS),以增强方形环形天线阵列的性能。改善天线性能的主要挑战是增加整个天线体积,这是通过吸收天线结构背面的平面NZRI MSS来缓解的。拟议的NZRI MSS负载CPW馈电(共面波导)四元阵列天线是使用基于有限元法的仿真工具高频结构模拟器(HFSS)在陶瓷-生物塑料-陶瓷夹层基板上设计的。通过将NZRI MSS与7×6套天线结构结合在天线结构的背面,可以大大提高天线的增益和方向性。测量结果表明,在第一,第二和第三频带中,天线的最大增益分别从6.21 dBi增加到8.25 dBi,从6.52 dBi增加到9.05 dBi,并且从10.54 dBi增加到12.15 dBi。分析并优化了接地平面中缝隙配置对天线反射系数的影响。整体性能使所建议的天线适用于基于遥测的UHFFM(超高频频率调制)空间应用以及移动卫星,微波辐射测量和射电天文学应用。

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