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A Dual-Band Shared-Aperture Antenna With Large Frequency Ratio, High Aperture Reuse Efficiency, and High Channel Isolation

机译:具有大频率比,高光圈重用效率和高通道隔离度的双频共享孔径天线

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摘要

The operating frequency of future communication systems will cover unlicensed millimeter-wave bands as well as existing microwave bands. Large frequency ratio antennas that can be applied to both frequency bands simultaneously and maintain the high isolation between the two channels are difficult to design. This paper presents a new design of dual-band shared-aperture antenna based on the concept of structure reuse. The antenna consists of a patch antenna working at 3.5 GHz and a 12 x 12 substrate integrated waveguide (SIW) slot array antenna working at 60 GHz. The frequency ratio of this shared-aperture antenna is 17. In this design, the overall structure of the SIW slot array antenna is employed as the radiator of the patch antenna. With this new scheme, the high aperture reuse efficiency can be achieved. Meanwhile, the millimeter-wave antenna based on the SIW technology has the high-pass nature to reject the lower frequency signal. A compact microstrip resonant cell that acts as a low-pass filter is connected in series on the feedline of the microwave antenna to suppress the upper frequency signal. Thus, the channel isolation between the patch and the SIW slot array antennas can be more than 130 dB at 3.5 GHz and 65 dB at 60 GHz.
机译:未来通信系统的工作频率将涵盖未许可的毫米波频段以及现有的微波频段。很难同时设计可同时应用于两个频段并保持两个通道之间高隔离度的大频率比天线。本文提出了一种基于结构复用概念的双频共享孔径天线的新设计。该天线由工作在3.5 GHz的贴片天线和工作在60 GHz的12 x 12基板集成波导(SIW)缝隙阵列天线组成。此共享孔径天线的频率比为17。在此设计中,SIW缝隙阵列天线的整体结构用作贴片天线的辐射器。利用这种新方案,可以实现高光圈重用效率。同时,基于SIW技术的毫米波天线具有高通特性,可以拒绝低频信号。用作低通滤波器的紧凑型微带谐振单元串联在微波天线的馈线上,以抑制高频信号。因此,贴片天线和SIW缝隙阵列天线之间的信道隔离在3.5 GHz时可以超过130 dB,在60 GHz时可以超过65 dB。

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