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Analysis on the time-domain transfer characteristics of UWB TEM horn antenna

机译:UWB TEM喇叭天线的时域传输特性分析

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摘要

In this paper, the time-domain field-to-circuit transfer characteristics of UWB TEM horn antenna were studied with analytical method and simulation method respectively. To obtain the electric flied waveform in the far-filed region of the TEM horn excited by any voltage sources, we could first get the coupled voltage waveform of the antenna illuminated by impulse-like incident plane wave by means of experiments or simulation, and then make convolution of the coupled voltage and the excited voltage. So that rE, the field-distance product, will be acquired by multiplying the convolution result with a certain constant. It was observed that while the opening angle and azimuth angle of the TEM horn were kept unchanged, the value of rE growed larger as the length of the two conducting plates of the horn increased. If the volume of the TEM horn scaled up, the amplitude of second-time radiaton pulse, resulting from mismatch between the impedance of the TEM horn and free space, stayed the same, but the delay between the second-time radiation and the main pulse increased, which equaled to 2*l/c, where l was the length of the TEM horn's conducting plate and c the speed of light.
机译:本文分别用解析法和仿真法研究了UWB TEM喇叭天线的时域场-电路传输特性。为了获得被任何电压源激发的TEM喇叭远场区域中的电漂移波形,我们首先可以通过实验或仿真获得由脉冲状入射平面波照射的天线的耦合电压波形,然后对耦合电压和激励电压进行卷积。因此,通过将卷积结果与某个常数相乘就可以得到场距离乘积rE。可以观察到,虽然TEM喇叭的张开角和方位角保持不变,但随着喇叭的两个导电板的长度增加,rE的值会增大。如果TEM喇叭的音量增大,则由于TEM喇叭的阻抗与自由空间之间的不匹配而导致的第二次辐射脉冲的幅度保持不变,但是第二次辐射与主脉冲之间的延迟增加,等于2 * l / c,其中l是TEM喇叭导电板的长度,c是光速。

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