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Ultracompact Retrodirective Antenna Arrays With Superdirective Radiation Patterns

机译:具有超定向辐射图的超紧凑型定向天线阵列

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摘要

It is shown that the direction-of-arrival (DoA) information carried by an incident electromagnetic (EM) wave can be encoded into the evanescent near field of an electrically small resonance antenna array with a spatial rate higher than that of the incident field oscillation rate in free space. Phase conjugation of the received signal leads to the retrodirection of the near field in the antenna array environment, which in turn generates a retrodirected far-field beam toward the original DoA. This EM phenomenon enables electrically small retrodirective antenna arrays with superdirective, angular super-resolution, auto-pointing properties for an arbitrary DoA. A theoretical explanation of the phenomenon based on first principal observations is given and full-wave simulations demonstrate a realizability route for the proposed retrodirective terminal that is comprised of resonance dipole antenna elements. Specifically, it is shown that a three-element disk-loaded retrodirective dipole array with 0.15lambda spacings can achieve a 3.4-dBi maximal gain, 3-dBi front-to-back ratio, and 13% return loss fractional bandwidth (at the 10-dB level). Then, it is demonstrated that the radiation gain of a three-element array can be improved to approximately 6 dBi at the expense of the return loss fractional bandwidth reduction (2%).
机译:结果表明,入射电磁波(EM)携带的到达方向(DoA)信息可以被编码为电小谐振天线阵列的渐逝近场,其空间速率高于入射场振荡的空间速率。可用空间中的费率。接收信号的相位共轭会导致天线阵列环境中近场的逆向,从而产生朝向原始DoA的逆向远场波束。这种EM现象使电小型逆向天线阵列具有针对任意DoA的超指向性,角度超分辨率,自动指向特性。给出了基于第一个主要观测值的现象的理论解释,全波仿真证明了所提出的由谐振偶极子天线元件组成的指向性终端的可实现性路线。具体来说,它表明,具有0.15 lambda间距的三元磁盘加载逆向偶极子阵列可以实现3.4-dBi的最大增益,3-dBi的前后比以及13%的回波损耗分数带宽(在10 dB电平)。然后,证明了三元素阵列的辐射增益可以以回波损耗分数带宽减小(2%)为代价提高到大约6 dBi。

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