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Compressed Dipoles Resonating at Higher Order Modes With Enhanced Directivity

机译:压缩偶极子在高阶模式下具有增强的方向性共振

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摘要

A compressed dipole operating at higher order modes is proposed and investigated for the enhancement of boresight directivity. Compared with conventional dipoles in free space, the length of the proposed dipole is compressed although the currents on the compressed dipole still sinusoidally distribute. The traces of calculated compressed dipole's directivity against compressibility show that the directivity of a compressed dipole operating at higher resonant modes is larger than conventional dipoles for the well selected compressibility. This paper shows that printing the dipole onto a piece of dielectric substrate can achieve the desired compressibility. The relationship between the compressibility and relative permittivity of the dielectric slab provides the guidance to realize the selected compressibility. As an example, a thin linear compressed dipole resonating at the third mode is designed, fabricated, and measured to validate the method. The measured broadside gain of the proposed compressed dipole reaches up to 4.6 dBi, 75% or 2.45 dBi higher than a conventional dipole.
机译:提出并研究了以更高阶模式工作的压缩偶极子,以增强视轴方向性。与自由空间中的常规偶极子相比,尽管在压缩偶极子上的电流仍呈正弦分布,但所提出的偶极子的长度被压缩了。计算得出的压缩偶极子的指向性相对于可压缩性的痕迹表明,对于选择好的可压缩性,在较高共振模式下工作的压缩偶极子的指向性大于常规偶极子。本文表明,将偶极子印刷到一块介电基板上可以实现所需的可压缩性。介电板的可压缩性与相对介电常数之间的关系为实现选定的可压缩性提供了指导。例如,设计,制造和测量在第三模式下谐振的细线性压缩偶极子以验证该方法。所建议的压缩偶极子的测得宽边增益比传统偶极子高出4.6 dBi,75%或2.45 dBi。

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