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The use of equivalent secondary sources in the theory of ground-wave propagation over an inhomogeneous earth

机译:在非均匀地球上的地波传播理论中使用等效次级源

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The paper deals with the propagation of a vertically polarized ground-wave over an inhomogeneous spherical earth. On the basis of approximate boundary conditions and a specially chosen auxiliary function in Green's theorem, the integral equation for the attenuation function is derived. A general method of solving this integral equation by numerical techniques for paths composed of a number of homogeneous sections is discussed. It is proved that the result is in agreement with the reciprocity theorem. The actual field is shown to be the superposition of the fields generated by the primary source and by secondary sources distributed along the path. It is demonstrated that the distributed secondary sources may be approximately replaced by a number of suitably chosen equivalent secondary sources. An approximate method of calculation based on this property is introduced. The method is discussed in some detail in two cases: when the paths may be regarded plane and when they extend into the diffraction zone. The proposed method makes possible a simple and rapid calculation of field strength in many practical cases. It may be used for any phase characteristic of the complex permittivity of the soil. The paper confirms the important conclusion that placing the transmitting or receiving antenna over a well-conducting soil may considerably improve the reception. It is shown further that the electrical properties of the earth in the neighbourhood of the transmitter also have an influence on the phase of the field.
机译:本文研究了垂直极化的地波在非均匀球形地球上的传播。根据近似边界条件和格林定理中特别选择的辅助函数,推导了衰减函数的积分方程。讨论了用数值技术求解由许多齐次截面组成的路径的积分方程的一般方法。证明了该结果与对等定理是一致的。实际场显示为由主要源和沿路径分布的次要源生成的场的叠加。已经证明,可以用许多适当选择的等效次级源来近似替代分布式次级源。介绍了基于此属性的近似计算方法。在以下两种情况下详细讨论了该方法:何时可以将路径视为平面以及何时将路径延伸到衍射区中。所提出的方法使得在许多实际情况下简单而快速地计算场强成为可能。它可用于土壤复介电常数的任何相位特性。该论文证实了重要的结论,即将发射或接收天线放在导电良好的土壤上可以大大改善接收效果。进一步示出,在发射器附近的地球的电特性也对场的相位有影响。

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