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A new approach to nearly constant input impedance of self-complementary antennas

机译:一种新的自互补天线近恒定输入阻抗的新方法

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摘要

Conformal techniques, based on the covariance of Maxwell's electrodynamics under the full conformal group in four spacetime dimensions, are discussed in relation with the constant input impedance properties of frequency-independent antennas. In particular, we show that by applying suitable conformal transformations to existing self-complementary planar structures like logarithmic spirals, the constant input impedance property is considerably improved, especially in the low-frequency domain, where it usually fails due to the large wavelength involved. This procedure enables to perform a more intelligent truncation with the aim to capture some of the properties left behind in the cutting and to design realistic ultra wideband antennas with a more controlled value of the input impedance in the whole operation range.
机译:基于麦克斯韦尔在四个时期尺寸下的全共形尺寸下的麦克斯韦尔电动力学的协方差的共形技术,与频率无关的天线的恒定输入阻抗特性有关。 特别地,我们表明,通过将合适的共形变换应用于像对数螺旋等现有的自互补平面结构,恒定输入阻抗特性显着改善,尤其是在低频域中,其通常由于所涉及的大波长而发生故障。 此过程使得能够执行更智能截断,其目的是捕获在切割中留下的一些属性并设计具有在整个操作范围内的输入阻抗的更受控值的现实超宽带天线。

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