有限导电性大地上垂直半波天线的阻抗

W. L. Barrow
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引用次数: 4

摘要

用感应电动势法计算了给定电导率和介电常数的地面上任意距离的垂直半波天线的复阻抗。基于k0≪|k|(其中k0和k分别是大气和土壤的波数)的假设,该结果适用于除非常干燥的土壤以外的任何土壤,深度约为10米。计算的基础是偶极子在任意电性半空间上的场的Sommerfeld-von Hoerschlemann表达式。将总阻抗分成三部分,Z = Z1 + Z2 + Z3,其中分量Z1表示天线的自阻抗,Z2表示天线与其完美像之间的互阻抗,Z3表示由于地球电导率有限而产生的阻抗分量。发现Z3与两个因素成正比,其中一个因素与地球的电导率和介电系数以及波长有关,另一个因素仅与h/λ的比值有关,其中h =天线高度,λ =波长。将Z3表示为适用于任何情况的计算形式,并给出了四个典型例子的曲线。对于λ bbb10米和除非常干燥的土壤外的所有土壤,有限电导率的影响是相当小的,因此,通常做出的完全反射地球的假设在很多情况下是合理的。除了非常短波或非常干燥的土壤外,阻抗基本上与完全导电的土壤的阻抗相同。提出了一种相似原理,即在同一种地面上具有相同h/λ值的两根天线具有相同的阻抗。
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On the impedance of a vertical half-wave antenna above an earth of finite conductivity
The complex impedance of a vertical half-wave antenna located any distance above an earth of given conductivity and dielectric constant is calculated by the “induced electromotive force” method. Based on the assumption k0≪ |k| (where k0 and k are the wave numbers for the atmosphere and earthy respectively), the results are applicable down to about 10 meters for any earth except a very dry soil. The calculation is based on the Sommerfeld-von Hoerschlemann expression for the field of a dipole above a half space of arbitrary electrical character. After splitting the total impedance into three parts, Z = Z1 + Z2 + Z3, the component Z1 is shown to be the self-impedance of the antenna, Z2 the mutual impedance between the antenna and its perfect image, and Z3 an impedance component due to the finite conductivity of the earth. Z3 is found to be proportional to two factors, one of which depends on the conductivity and dielectric coefficient of the earth and the wavelength and the other of which depends only on the ratio h/λ, where h = antenna height and λ = wavelength. Z3 is put in a form suitable for the computation of any given case and curves are shown for four typical examples. For λ > 10 meters and all except very dry soil, the effect of the finite conductivity is quite small and the assumption, often made, of a perfectly reflecting earth thus is justified for a large number of cases. The impedance is, except for very short waves or exceedingly dry soil, substantially that obtained for a perfectly conducting earth. A principle of similitude is stated, in which two antennas over the same kind of earth and having equal values of h/λ have identical impedances.
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