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Transmitted fields of a directional antenna in proximity of a wall

机译:墙壁附近的定向天线的透射场

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摘要

Transmission of a directional antenna in near proximity of a building wall modelled by a semi-finite dielectric slab above a perfectly conducting ground is investigated and an accurate and fast method to predict wall penetration loss (PL) once the source/observation points are in proximity of the wall is proposed. First, the antenna is replaced by an array of electric Hertzian dipoles with approximately the same half power beamwidth. Second, the dipole array radiation is calculated both numerically and asymptotically. They are based on computation of Sommerfeld integrals using Filon quadrature (FQ) technique and the steepest descent method, respectively. Third, PL of a typical -polarised and -polarised horn and a -polarised wire antenna, simulated in FEKO using the method of moments (MoM) is compared with that of, respectively, the -, - and -directed dipole arrays calculated using FQ technique. A good agreement between MoM and the dipole model results are obtained for relatively short stand-off distances for which estimation based on slab transmission coefficient is not an accurate approximation. The proposed dipole array model with FQ technique makes calculation at least 7.5 times faster than FEKO. Fourth, PL for different wall permittivity and conductivity is studied.
机译:研究了定向天线在完美导电地面上方由半有限介电板建模的建筑物墙附近的传输情况,并在源/观测点接近时预测墙穿透损耗(PL)的准确而快速的方法建议的墙壁。首先,用电赫兹偶极子阵列代替天线,该电赫兹偶极子阵列具有大约相同的一半功率波束宽度。其次,偶极子阵列辐射是通过数值和渐近方式计算的。它们分别基于使用Filon正交(FQ)技术和最速下降法计算的Sommerfeld积分。第三,将使用矩量法(MoM)在FEKO中模拟的典型极化和极化号角天线和极化电线天线的PL分别与使用FQ计算的-,-和定向偶极子阵列的PL进行比较。技术。对于相对短的对峙距离,MoM和偶极子模型结果之间取得了很好的一致性,对于该距离,基于平板传输系数的估计不是精确的近似值。所提出的具有FQ技术的偶极子阵列模型使计算速度至少比FEKO快7.5倍。第四,研究了不同壁介电常数和电导率的PL。

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