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A printed dipole reconfigured with magneto-static responsive structures that do not require a directly connected biasing circuit

机译:印刷偶极子采用静磁响应结构重新配置,不需要直接连接偏置电路

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An initial study of novel Magneto-static Responsive Structures (MRSs) and their application to the frequency reconfigurability of a printed dipole antenna is presented here. The embodiment of the MRSs consisted of a cylindrical cavity with a diameter of 0.9 mm drilled into a 20.0 mil thick 1.5 mm × 1.5 mm TMM4 substrate. The cavities were partially filled with silver coated magnetic particles and covered on the top and bottom with copper tape. The conducting magnetic particles responded to an externally applied magnetic field and formed columns in the direction of the magnetic field lines. The columns connected the top and bottom conducting planes, acting as a switch. It was demonstrated that the electrical length of an antenna could be changed and the resonant frequencies could be reconfigured from 1.5 GHz to 1.9 GHz by incorporating the MRSs into the dipole antenna and controlling the ON and OFF states of the MRS switch. Overall, it was shown that the simulated results agreed well with the measurements. It was also demonstrated that the proposed MRSs do not need directly connected biasing circuitry, making them particularly useful for complex antenna designs.
机译:本文介绍了新颖的静磁响应结构(MRS)及其在印刷偶极天线的频率可重构性中的应用。 MRS的实施例包括一个直径为0.9毫米的圆柱形空腔,钻入20.0密耳厚的1.5毫米×1.5毫米TMM4基板中。空腔部分填充有涂银的磁性颗粒,并在顶部和底部用铜带覆盖。导电磁性颗粒响应于外部施加的磁场并在磁场线的方向上形成圆柱。列连接顶部和底部导电平面,充当开关。已经证明,通过将MRS合并到偶极天线中并控制MRS开关的ON和OFF状态,可以改变天线的电长度,并且可以将谐振频率从1.5 GHz重新配置为1.9 GHz。总体而言,结果表明模拟结果与测量结果吻合良好。还证明了建议的MRS不需要直接连接的偏置电路,这使其对复杂的天线设计特别有用。

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