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Compact multiband antennas of self-similar analytic geometry inspired by the chirp waveform

机译:线性调频波形激发自解析几何结构的紧凑型多频带天线

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Analytic geometry antennas, including Sinusoidal and Chebyshev antennas, have shown a good potential for integration into miniature devices like wireless sensors. This paper augments the field of analytic geometry antennas by introducing a genre of antennas inspired by the chirp waveform; attention shifts to multifrequency antennas. Pre-fractal antennas are well-known multiband radiators, owing to their fractal self-similarity. Chirp antennas introduce the concept of analytic self-similarity, which enables smooth Euclidean antennas to produce functional operating bands apart from their natural resonances; these generalized sinusoidal structures manage to transform the non-uniform spatial sweeping of Chebyshev antennas into a multifrequency response. The designed Chirp variant produced eight non-harmonically-related resonances inside a 2.6 octave bandwidth (1–6 GHz). Numerical results indicate an aggregate bandwidth (BW) equal to 0.53 GHz and fractional BWs in the range 1–6%. The Chirp antenna is also highly efficient, scoring a 90% average efficiency. Measured data corroborate the multifrequency response of Chirp antennas. Proper adjustment of the dimensions of the chirp-like element and the ground plane leads quickly to an efficient radiator that displays a radiation resistance close to 50 Ω and a reactance that is adjustable between inductive and capacitive response.
机译:分析几何天线,包括正弦天线和切比雪夫天线,已经显示出集成到诸如无线传感器之类的微型设备中的良好潜力。本文介绍了一种受线性调频波形启发的天线类型,从而扩大了解析几何天线的领域。注意力转移到多频天线上。预分形天线由于其分形自相似性而成为众所周知的多频带辐射器。线性调频天线引入了分析自相似性的概念,它使光滑的欧几里得天线能够产生除其固有共振之外的功能性工作频带。这些广义的正弦波结构设法将切比雪夫天线的不均匀空间扫描转换成多频响应。设计的Chirp变体在2.6倍频程带宽(1-6 GHz)内产生了8个非谐波相关的谐振。数值结果表明,总带宽(BW)等于0.53 GHz,分数BW在1-6%的范围内。线性调频天线效率很高,平均效率为90%。实测数据证实了线性调频天线的多频响应。适当调整the状元件和接地平面的尺寸会很快导致一个高效的辐射器,该辐射器的辐射电阻接近50Ω,电抗可在感性和容性响应之间调节。

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