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Analysis of Sleeve Dipole Antennas Fed by Ferrite-Loaded Coaxial Cables for a Scaled-Down Cross-Borehole Radar

机译:铁氧体负载同轴电缆馈送的按比例缩小交叉孔雷达的袖子偶极天线的分析

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摘要

Two equivalent models to sleeve dipole antennas fed by ferrite-loaded coaxial cables for a scaled-down cross-borehole radar are tested by employing the finite-difference time-domain method. Compared to the measured diffraction patterns of an air-filled circular cylinder in water, the simulated results based on the simplified perfect magnetic conductor model cannot provide sufficient attenuation not only in the single dip pattern at 2.6 GHz but also in double dip pattern at 2.8 GHz. It leads us to develop a more accurate one so-called distributed element model which is implemented by a finite sum of serial sections consisting of a resistor, a finite length of perfect electric conductor (PEC) cylinder, an inductor, and the same PEC cylinder. When the values of the distributed elements as well as the number of serial sections are adjusted properly, the simulated diffraction patterns closely approach to the experimentally measured data at both frequencies of 2.6 and 2.8 GHz.
机译:通过采用有限差分时域方法,测试了按比例缩小的跨井雷达的铁氧体负载同轴电缆馈电的套筒偶极天线的两个等效模型。与测量的充气圆柱体在水中的衍射图相比,基于简化的完美磁导体模型的模拟结果不仅不能在2.6 GHz的单倾角模式下而且在2.8 GHz的双倾角模式下提供足够的衰减。它使我们开发出一种更精确的所谓的分布式元素模型,该模型由有限个串联部分的总和来实现,该串联部分包括电阻器,有限长度的理想电导体(PEC)圆柱体,电感器和同一PEC圆柱体。如果适当调整了分布元素的值以及连续截面的数量,则模拟衍射图将非常接近2.6 GHz和2.8 GHz两个频率上的实验测量数据。

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