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Design and Development of Reconfigurable Microstrip Patch Antenna Using MEMS Switch for Ku-band Application

机译:用于KU波段应用的MEMS开关的可重新配置微带贴片天线的设计与开发

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Reconfigurable multi-band antennas are attractive for many satellite applications where it is required to have a single common antenna that can be dynamically reconfigured to transmit (or receive) on multiple frequency bands. The design of printed microstrip antenna is reported in Ku-Band for wireless applications in this paper. The planar, very small, thin antenna with coaxial probe feed of 50 Ω is first realized at 15 GHz on a PTFE substrate having a dielectric constant of 2.5 and a substrate thickness of 1.6 mm. Simulations have been carried out with the Ansoft HFSS 13. On moving towards reconfigurability, the structure under investigation the schematic structure consist of two patches, one is driving patch of dimension 5 * 5.7 mm~2 and another defined as wing patch of dimension 5*1 mm~2 separated by 1 mm distance. MEMS (Micro electro Mechanical System) switch is applied between driven patch and wing patch. The gap between the two is varied by using MEMS switch. The switch may be closed or open and it changes the antenna operational frequency. When the switch closes, the wing patch is coupled with main patch by an inductance. When the switch opens, the wing patch is coupled with main patch by a capacitance. The simulation results show that the antenna can change the work frequency from 15 GHz to 15.65 GHz in Ku band with RFMEMS switch.
机译:重新配置的多波段天线是用于其中要求有一种能够在多频带上被动态地重新配置,以发射(或接收)一个单一的公共天线许多卫星应用具有吸引力。印刷微带天线的设计报告在Ku波段在本文的无线应用。的平面的,具有50Ω的同轴探针饲料非常小型化,薄型天线在具有2.5的介电常数和1.6mm的基板厚度的PTFE基板上15GHz的首次实现。维的模拟已与Ansoft的HFSS 13进行在朝向可重新配置性,所研究的结构的示意性结构包括两个贴片的移动,一个是驱动贴片5 *5.7毫米〜2和另一个定义为维度5的翼补丁* 1毫米〜2分离1米毫米的距离。 MEMS(微机电系统)开关被驱动贴片和贴片翼之间施加。这两者之间的间隙是通过使用MEMS开关变化。所述开关可以是封闭或开放的,它改变了天线的工作频率。当开关关闭时,所述翼贴剂加上由电感主要补丁。当开关打开时,翼贴剂加上由电容主补丁。仿真结果表明,该天线能够工作频率为15 GHz,具有RFMEMS开关改变至15.65千兆赫在Ku波段。

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