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Design of Wavetraps for Isolation Improvement in Compact In-Band Full-Duplex Relay Antennas

机译:紧凑型带内全双工中继天线中用于隔离改善的陷波器设计

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In full-duplex (FDX) multiple-input and multiple-output (MIMO) systems, the self-interference between each transmitting and receiving antenna, caused by finite isolation between antennas, limits the obtainable signal-to-interference ratio of the system and thus the total capacity. In this paper, the design of planar wavetraps for isolation improvement between multiple antennas is introduced, with an emphasis on back-to-back relay structures. General guidelines for the design of planar wavetraps are deduced which could be applied also in isolation improvement of other antenna structures. A prototype back-to-back relay antenna with two dual-polarized patches for FDX MIMO is presented with the frequency of operation of 2.6 GHz. The prototype antenna is manufactured and the simulated results are validated with measurements. The minimum isolation among each antenna pair on the opposite sides of the relay is improved by 20 dB across a 18-MHz bandwidth, while 15-dB improvement can be obtained across 167-MHz bandwidth, yielding total isolation levels of 70 and 65 dB, respectively. The radiation pattern of the relay antenna is measured with and without wavetraps to show that the wavetraps do not have significant effect on the main lobe radiation properties.
机译:在全双工(FDX)多输入多输出(MIMO)系统中,由于天线之间的有限隔离而导致的每个发射和接收天线之间的自干扰会限制系统可获得的信噪比,并且因此总容量。本文介绍了用于改善多天线之间隔离度的平面陷波器的设计,重点是背靠背中继结构。推导了平面陷波器设计的一般准则,这些准则也可用于改善其他天线结构的隔离度。提出了具有两个用于FDX MIMO的双极化贴片的背对背中继天线原型,其工作频率为2.6 GHz。制造了原型天线,并通过测量验证了仿真结果。在18MHz的带宽上,中继器相对两侧的每个天线对之间的最小隔离度提高了20dB,而在167MHz的带宽上可获得15dB的改善,从而产生了70和65dB的总隔离度,分别。在有和没有陷波的情况下测量中继天线的辐射方向图,表明该陷波对主瓣辐射特性没有显着影响。

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