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Novel Stitched Ground Plane Optimizations for Microstrip Patch Antennas at Wi-Fi and WiMAX Applications

机译:Wi-Fi和WiMAX应用中微带贴片天线的新型缝合接地平面优化

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This work explores the optimal mesh structure, stitch density and production technique of stitched ground plane for microstrip patch antenna. Meshed ground plane was used as a generic problem. A stitched ground plane is pro-posed and designed using Matlab interface to computer embroidery. Using the meshed or stitched ground plane as a case study, the resistance between meshes was analysed and measured. The equivalent resistance between nodes is a function of their distance apart. A finite resistive grid was simulated and compared to measured sets of data. A microstrip patch antenna with stitched ground shows comparable performance to the conventional etched ground of the size in terms of bandwidth. The stitched ground plane has a higher band-width than the etched copper ground plane because of the increased thickness of the substrate. Thus, it can be concluded that the use of the interface method shows the possibilities of controlling the stitch density and distances between mesh nodes. The interface increases the stitching density and reduces the elec-trical resistance between mesh nodes making the antennas flexible and weara-ble. The functionality of these antenna samples has been tested and validated using microstrip patch ground at 2.45 GHz and 5 GHz. Measurement results on the proposed stitched ground planes were compared with the theory of infinite resistive network that shows good agreement.
机译:这项工作探讨了微带贴片天线缝合接地平面的最佳网格结构,针迹密度和生产技术。网状地面平面被用作通用问题。使用Matlab界面采用缝合接地平面到计算机刺绣。使用啮合或缝合地面平面作为案例研究,分析并测量网格之间的电阻。节点之间的等效电阻是其距离的函数。模拟有限电阻网格并与测量的数据集进行比较。具有缝合地面的微带贴片天线显示出与带宽方面的传统蚀刻接地的相当性能。由于基板的厚度增加,缝合接地平面具有比蚀刻的铜接地平面更高的带宽。因此,可以得出结论,接口方法的使用示出了控制网状节点之间的针迹密度和距离的可能性。该界面增加了缝合密度,并降低了Mesh节点之间的电阻,使天线柔性和Weara-BLE。这些天线样本的功能已经在2.45GHz和5 GHz下使用微带贴片接地测试和验证。拟议的缝合接地平面上的测量结果与显示良好一致的无限电阻网络理论进行了比较。

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