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Investigations on the Effect on Micro Strip Patch Antennas Using Shaped Slots

机译:异形槽对微带贴片天线的影响研究

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Since the Federal Communication Committee has announced a range of frequencies from 3.10GHz to 10.60GHz constituting a bandwidth of 7.5GHz, Ultra wideband technology (UWB) is move ahead quickly as a high data rate technology for wireless communication. The effect of combining different geometrical patches derived from a basic rectangular patch antenna for wireless communications, GPS technology, satellite communication and air-craft applications are presented here. The antenna proposed is designed in FR-4 substrate which has 1.6 mm thick and permittivity of 4.4. The size of the substrate is 37.9mm × 47.63mm × 1.6mm. The antennas are simulated with ANSYS HFSS, the 3D electromagnetic (EM) simulation tool for radio frequency and fast electronic components. The impact on return loss and band width as a result of imperfections on patch can be observed from the obtained results. Introducing slots, defects on ground plane, making irregularities on patch shapes causes a wide variation in antenna parameters. It is clear that an increase in band width and reduction in return loss is obtained by combining the different shaped geometrical patches.
机译:由于联邦通信委员会已宣布3.10GHz至10.60GHz的频率范围(构成7.5GHz的带宽),因此超宽带技术(UWB)作为无线通信的高数据速率技术正在迅速发展。此处介绍了将源自基本矩形贴片天线的不同几何贴片组合在一起的效果,以用于无线通信,GPS技术,卫星通信和飞机应用。所建议的天线是在FR-4基板上设计的,该基板的厚度为1.6 mm,介电常数为4.4。基板尺寸为37.9mm×47.63mm×1.6mm。使用ANSYS HFSS(用于射频和快速电子组件的3D电磁(EM)仿真工具)对天线进行仿真。从获得的结果中可以观察到由于贴剂缺陷而对回波损耗和带宽的影响。引入缝隙,接地平面上的缺陷,使贴片形状不规则会导致天线参数变化很大。显然,通过组合不同形状的几何补丁可以获得带宽的增加和回波损耗的减少。

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