Printed fractal monopole antenna array for WLAN

Q. Luo, H. Salgado, J. Pereira
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引用次数: 11

Abstract

This paper presents the design of a single feed multiband printed monopole antenna array using the 2nd generation of the Minkowski fractal geometry. The multiband operation is achieved by a suitable chosen of the size and iteration of the fractal geometry, which is optimized using the EM simulation tool Ansoft HFSS. During this work, it is found that adding a rectangular stub on the ground plane, the impedance match of the antenna can be improved with little influence on the original resonant frequencies. This finding has been confirmed by both simulation and measurement results. Meanwhile, the antenna array on a PDA size substrate was also designed and fabricated. The experimental results show that it can operate from 2.32 to 2.49 and from 5.1 to 5.88 GHz, which covers the required bands for IEEE 802.11a/b/g (2.41–2.48 GHz, 5.15–5.35 GHz and 5.725–5.875 GHz) applications. Measurements indicate that the maximum gain of this printed monopole array can reach 2.3 dBi at lower band and 5.6 dBi at upper band. The simulation results show that the radiation efficiency of this antenna array is 86% at 2.4 GHz, 82% at 5.2 GHz and 89% at 5.8 GHz.
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用于WLAN的印刷分形单极天线阵列
本文利用第二代闵可夫斯基分形几何设计了一种单馈多波段印刷单极天线阵列。通过选择合适的分形几何大小和迭代来实现多波段操作,并利用电磁仿真工具Ansoft HFSS对其进行优化。在工作中发现,在地平面上增加一个矩形短段,可以在不影响原谐振频率的情况下改善天线的阻抗匹配。这一发现已被模拟和测量结果所证实。同时,在PDA尺寸的基板上设计并制作了天线阵列。实验结果表明,它可以在2.32 ~ 2.49 GHz和5.1 ~ 5.88 GHz范围内工作,覆盖了IEEE 802.11a/b/g (2.41 ~ 2.48 GHz、5.15 ~ 5.35 GHz和5.725 ~ 5.875 GHz)应用所需的频段。测量结果表明,该单极子阵列的最大增益可达下带2.3 dBi,上带5.6 dBi。仿真结果表明,该天线阵列在2.4 GHz时的辐射效率为86%,5.2 GHz时为82%,5.8 GHz时为89%。
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