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Coaxial-Fed Circular Dipole Array Antenna With Ferrite Loading for Thin Directional Borehole Radar Sonde

机译:同轴定向馈电圆形偶极子阵列天线,用于薄型定向井孔雷达探空仪

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摘要

In this paper, we propose a coaxial-fed dipole array antenna in a borehole with ferrite loading to achieve a thin directional borehole radar sonde (diameter of 54 mm). This radar works between about 20 and 150 MHz. When the dipole array, proposed previously, is used for the thin radar sonde, this antenna suffers from scattered waves from the centered conducting cylinder (CCC). This disturbs the estimation of the direction of arrival (DOA) below 100 MHz. To overcome the interference of the CCC, commercial ferrite cores were added to the CCC. A method-of-moment analysis showed that we may decrease the resonant frequency of the CCC to below 20 MHz, making use of the inductive characteristics of the ferrite cores. This widens the frequency bandwidth of the antenna. Field experiments in soil showed that the ferrite core-loaded CCC works reliably and confirmed that we can estimate the DOA between 20 and 150 MHz. Other measurements in rock which examined the power spectrum of a direct wave found that the ferrite cores widened the operating frequency bandwidth of the radar system.
机译:在本文中,我们提出了一种在带有铁氧体负载的钻孔中使用同轴馈电偶极子阵列天线,以实现薄型定向钻孔雷达探空仪(直径54 mm)的目的。该雷达的工作频率约为20至150 MHz。当先前提出的偶极子阵列用于细雷达探空仪时,该天线会受到来自中心导电圆柱体(CCC)的散射波的影响。这干扰了低于100 MHz的到达方向(DOA)的估计。为了克服CCC的干扰,在CCC中添加了商用铁氧体磁芯。矩量法分析表明,利用铁氧体磁芯的电感特性,我们可以将CCC的谐振频率降低到20 MHz以下。这加宽了天线的频率带宽。在土壤中的现场实验表明,铁氧体磁芯加载的CCC能够可靠地工作,并证实了我们可以估计20至150 MHz之间的DOA。在岩石中进行的其他检查直接波功率谱的测量发现,铁氧体磁芯拓宽了雷达系统的工作频率带宽。

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