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High Frequency Ground Wave Propagation

机译:高频地波传播

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Electromagnetic ground wave propagation has been a topic of practical interest for broadcasting and underground prospection in the medium and lower radio frequencies for more than a century. A brief review of ground wave propagation and its development since the work of Zenneck and Sommerfeld a century ago is presented. Recently interest has been revived in using ground waves for wireless communication with remote under-populated areas using the high frequency (HF) range which extends from 3–30 MHz. We present numerical results for the fields excited by a vertical electric dipole (VED) on the earth' surface in this range of frequencies and study the effect of ground conductivity on the received fields. In addition, we explore the possibility of using horizontal electric dipoles (HED) as transmitting and receiving dipoles. In this case, it is necessary to elevate both dipoles above the earth's surface by a distance comparable to a wavelength in order to enhance the received signal level. This is practically feasible in the HF regime where the wavelengths are sufficiently short We conclude that elevated HED's can perform as well as the VED, or even better, when the operating frequency lies in the upper end of the HF range.
机译:电磁地波传播已成为一个世纪以来中,低射频广播和地下勘探的实际兴趣所在。简要回顾了自一个世纪前Zenneck和Sommerfeld的工作以来的地波传播及其发展。最近,人们开始对使用地波进行无线通信,以利用3-30 MHz的高频(HF)范围与人口稀少的偏远地区进行无线通信。我们给出了在此频率范围内地球表面上的垂直电偶极子(VED)激发的场的数值结果,并研究了地面电导率对接收场的影响。此外,我们探索了使用水平电偶极子(HED)作为发射和接收偶极子的可能性。在这种情况下,有必要将两个偶极子升高到地球表面上方一段与波长相当的距离,以增强接收信号的水平。这在波长足够短的HF模式下实际上是可行的。我们得出结论,当工作频率位于HF范围的上限时,升高的HED的性能可以与VED一样好,甚至更好。

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