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Broadside FD Antenna Topologies for Nanosat Intersatellite Link

机译:Nanosat星际链路的宽带FD天线拓扑

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This paper presents and compares four different antenna topologies dedicated to Full-Duplex (FD) applications. The proposed architectures are able to operate simultaneously for transmitting TX and receiving RX radiating elements along broadside direction, contrarily to most of state of the art FD RF front-ends that also rely on destructive wave's concept to get Self-Interference Cancellation (SIC). The four prototypes make use of three SIC stages and the common first level is obtained using orthogonal linear polarization between TX and RX. Step-by-step improvements are introduced from one to another topology in order to increase the SIC level and to reduce both side lobe levels and antenna size. Simulated and experimental results are provided, compared and discussed at the center frequency of 2.4 GHz as a proof of concept. The isolation obtained between TX and RX paths is higher than 80 dB in simulation and 60 dB in measurement. These results pave the way to an implementation of a high gain Full-Duplex Ka-band antenna for Nanosat Intersatellite Link
机译:本文介绍并比较了专用于全双工(FD)应用的四种不同的天线拓扑。所提出的架构能够同时操作,以便沿宽边方向发送TX和接收RX辐射元件,这与大多数最新的FD RF前端相反,后者也依赖于破坏波的概念来获得自干扰消除(SIC)。四个原型利用三个SIC阶段,并且使用TX和RX之间的正交线性极化获得共同的第一级。从一种拓扑到另一种拓扑逐步进行了改进,以提高SIC级别并减小旁瓣级别和天线尺寸。提供了仿真和实验结果,在2.4 GHz中心频率上进行了比较和讨论,以此作为概念验证。 TX和RX路径之间获得的隔离度在仿真中高于80 dB,在测量中高于60 dB。这些结果为实现用于Nanosat星际链路的高增益全双工Ka波段天线铺平了道路

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