利用频域测量和复杂天线系数概念确定开放区域试验场的超宽带和时域特性

J. Mclean, R. Sutton
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引用次数: 0

摘要

通过数值和实验研究确定了具有代表性的开放式试验点的超宽带和时域特性。根据S. Ishigami等人(1996)和J. McLean等人(2002)的研究,使用一组已知复杂天线因子(CAFs)的可计算双锥天线,在非常宽的带宽(几十年)的频域内进行分析和测量。与典型的超宽带天线(如TEM喇叭)相比,双锥天线的主要优点是其包含相位信息的辐射方向图表现良好且可数值计算。可计算的双锥天线的最小散射特性是正确量化天线反射特性的关键。根据J. McLea等人(2002)的说法,归一化的复站点传递函数是由对这样的天线进行的复杂的2端口测量得出的,然后可以使用自动矢量网络分析仪通过傅里叶变换技术推导出站点的时域特征,例如脉冲响应。数值模拟和实验表征的代表性燕麦的时域响应将被提出,突出这些地点的非理想行为,包括地平面边缘反射/衍射和不完全镜面反射。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The determination of the ultra-wideband and time-domain behavior of open area test sites using frequency domain measurements and the complex antenna factor concept
The ultra-wideband and time-domain characteristics of representative Open Area Test Sites (OATS) are determined numerically and experimentally. The analysis and measurements are performed in the frequency domain over a very wide bandwidth (several decades) using a set of calculable biconical antenna with known complex antenna factors (CAFs) according to S. Ishigami et al. (1996) and J. McLean et al. (2002). The principal advantage of the biconical antennas over typical UWB antennas, such as TEM horns, is that their radiation pattern including phase information is well-behaved and numerically calculable. The minimum scattering features of the radiation patterns of the calculable biconical antennas are crucial to correctly quantifying the reflection characteristics of an OATS. The normalized complex site transfer function according to J. McLea et al. (2002) is derived from complex 2-port measurements made with pairs of such antennas and an automatic vector network analyzer can then be used to derive the time-domain characteristics, e.g. the impulse response, of the site via Fourier transform techniques. Numerical simulations and experimental characterization of the time-domain response of representative OATs will be presented highlighting the non-ideal behavior of such sites including ground plane edge reflection/diffraction and imperfect specular reflection.
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