EBG Placement Optimization in a Via-Fed Stacked Patch Antenna for Full-Duplex Wireless

A. Oladeinde, Samuel Shippey, Ehsan Aryafar, B. Pejcinovic
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Abstract

Full-Duplex (FD) wireless communication has the potential to double the capacity of a wireless link. The key challenge to FD is self-interference (SI): a node’s transmitting signal generates significant interference to its own receiver. Several prior works have shown the potential to reduce SI and build FD radios but they are limited to Sub-6 GHz systems. In this paper, we focus on the emerging mmWave systems and the potential reduction in SI through antenna design. The increased bandwidth requirements of mmWave systems necessitate the use of higher bandwidth antenna designs such as stacked patch antennas for transmission (Tx) and reception (Rx). Specifically, we investigate the optimal placement of a mushroom electromagnetic band gap (EBG) structure for maximum Tx and Rx isolation (coupling reduction) in a 4-layer substrate stacked patch antenna design targeted for small mobile devices. Through extensive simulations we show that top&inner layer EBG ("stacked") provides more than 80 dB of isolation at 28 GHz frequency, which is 20 dB more isolation than either top or inner layer EBG. We also show that the frequency bandwidth and gain of the stacked patch antenna are not negatively impacted due to the EBG integration.
全双工无线过馈堆叠贴片天线中EBG布局优化
全双工(FD)无线通信有可能使无线链路的容量翻倍。FD的关键挑战是自干扰(SI):节点的发射信号对其自己的接收器产生明显的干扰。先前的一些工作已经显示出减少SI和构建FD无线电的潜力,但它们仅限于Sub-6 GHz系统。在本文中,我们关注新兴的毫米波系统以及通过天线设计降低SI的潜力。毫米波系统的带宽需求增加,需要使用更高带宽的天线设计,如用于传输(Tx)和接收(Rx)的堆叠贴片天线。具体来说,我们研究了蘑菇电磁带隙(EBG)结构在针对小型移动设备的4层衬底堆叠贴片天线设计中的最佳位置,以实现最大的Tx和Rx隔离(耦合减少)。通过广泛的模拟,我们表明顶层和内层EBG(“堆叠”)在28 GHz频率下提供超过80 dB的隔离,比顶层或内层EBG的隔离度高20 dB。我们还表明,叠置贴片天线的频率带宽和增益不受EBG集成的负面影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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