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A New Metasurface Superstrate Structure for Antenna Performance Enhancement

机译:一种新的超表面上层结构,用于增强天线性能

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摘要

A new metasurface superstrate structure (MSS)-loaded dual band microstrip line-fed small patch antenna is presented in this paper. The proposed antenna was designed on a ceramic-filled bioplastic sandwich substrate with a high dielectric constant. The proposed 7 × 6 element, square-shaped, single-sided MSS significantly improved the bandwidth and gain of the proposed antenna. The proposed MSS incorporated a slotted patch antenna that effectively increased the measured operating bandwidth from 13.3% to 18.8% and from 14.8% to 23.2% in the lower and upper bands, respectively. Moreover, the average gain of the proposed MSS-based antenna was enhanced from 2.12 dBi to 3.02 dBi in the lower band and from 4.10 dBi to 5.28 dBi in the upper band compared to the patch antenna alone. In addition to the bandwidth and gain improvements, more directive radiation characteristics were also observed from the MSS antenna compared to the patch itself. The effects of the MSS elements and the ground plane length on the reflection coefficient of the antenna were analyzed and optimized. The overall performance makes the proposed antenna appropriate for RFID and WLAN applications.
机译:本文提出了一种新型的超表面结构(MSS)加载双频带微带线馈电小型贴片天线。拟议的天线设计在具有高介电常数的陶瓷填充生物塑料夹层基板上。拟议中的7×6单元,方形,单面MSS显着提高了拟议天线的带宽和增益。拟议的MSS集成了缝隙贴片天线,可以有效地将测量的工作带宽从低频段和高频段分别从13.3%增加到18.8%,从14.8%提高到23.2%。此外,与单独的贴片天线相比,所建议的基于MSS的天线的平均增益在较低频段从2.12 dBi提高到3.02 dBi,在较高频段从4.10 dBi提高到5.28 dBi。除了带宽和增益的改善之外,与贴片本身相比,MSS天线还观察到了更多的定向辐射特性。分析并优化了MSS元件和接地平面长度对天线反射系数的影响。整体性能使所建议的天线适合RFID和WLAN应用。

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