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Design of a Compact Miniaturized Probe-Fed Patch AntennaUsing Electromagnetic Bandgap Structures

机译:紧凑型小型化探头滤波防膜电磁带隙结构的设计

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Patch antennas are commonly used in wireless applications due to their low profile and ease of fabrication. These antennas can be relatively large in mobile and WLAN frequency bands, and methods for miniaturization should be employed in order to make them viable for compact form factors. One of these techniques involves loading the antenna with an electromagnetic bandgap (EBG) structure. EBG structures are typically operated in their bandgap region in order to suppress unwanted sdfface waves or reduce the inter-element substrate coupling in multi-antenna systems [1-3]. An EBG structure also supports slow-wave propagation in which smaller effective wavelength compared to those in freespace and dielectric can be achieved. Thus, the area occupied by a patch antenna can be significantly reduced by simply integrating it above an EBG substrate [4,5]. In this paper, a miniaturized probe-fed patch an-tenna backed by a mushroom-type EBG substrate is designed that achieves 66.83% area reduction. Different EBG unit cell sizes are simulated in order to determine the proper slow-wave wavelength that yields the smallest width and length for the patch without compromising its radiation characteristics. The performance of the designed miniaturized antenna is also compared with that of a conventional one. Finally, the coupling between two miniaturized antennas is evaluated in the E- and H-plane arrangements in order to observe the impact of miniaturization EBG on reducing the mutual coupling.
机译:由于它们的低轮廓和易于制造,贴片天线通常用于无线应用中。这些天线在移动和WLAN频带中可以相对较大,并且应该采用用于小型化的方法,以使它们可用于紧凑的形状因子。其中一种技术涉及用电磁带隙(EBG)结构加载天线。 EBG结构通常在其带隙区域中操作,以抑制不需要的Sdfface波或减少多天线系统中的元素间基板耦合[1-3]。 EBG结构还支持慢波传播,其中可以实现与氟普纳斯和电介质相比较小的有效波长。因此,通过简单地将其基于EBG衬底(4,5])可以显着降低由贴片天线占据的区域[4,5]。在本文中,设计了由蘑菇型EBG衬底支撑的小型化探针膜AN-Tenna,其达到了66.83%的面积减少。模拟不同的EBG单元电池尺寸以确定适当的慢波波长,从不损害其辐射特性,产生贴片的最小宽度和长度。还将设计的小型化天线的性能与传统的外天线的性能相比。最后,在E和H平面布置中评估两个小型化天线之间的耦合,以便观察小型化EBG对降低相互耦合的影响。

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