探地雷达中相移和单端口同轴单元介电常数测量的比较

W. Muller, Xavier Dérobert
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引用次数: 7

摘要

松散颗粒路面材料的粗糙和松散性质对传统的介电常数表征方法提出了许多挑战。另一种似乎更适合这些材料的方法是通过已知厚度的样品在离散频率下测量相移。为了验证这种方法与更成熟的方法相比,需要对可以使用任何一种方法轻松测量的材料进行比较。为此,在一系列固体介电板上进行了相移测量,包括各种类型的石头、塑料和人造材料。然后将该方法的介电常数预测结果与单端口同轴电池的结果进行比较。作为额外的比较,为了更好地理解结果,还使用GPRMax软件对相移测试装置进行了建模。为了提高预测精度,利用时域布莱克曼窗隔离直波,使测试装置内的混响最小化。然而,这种特殊测试设置所需的窄窗口也降低了检测频率相关介电常数变化的能力。总的来说,相移方法产生的真实相对介电常数预测与单端口同轴电池的预测相似。尽管目前的方法存在局限性,但结果验证了相移法作为一种简单快速的方法来表征较大的恒定厚度介电材料样品的介电常数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A comparison of phase-shift and one-port coaxial cell permittivity measurements for GPR applications
The coarse and loose nature of unbound granular road materials presents a number of challenges for conventional permittivity characterisation approaches. An alternative that appears better suited to these materials involves measuring the phase-shift at discrete frequencies through a sample of known thickness. To validate this approach against more established methods, a comparison is required on materials that can be easily measured using either method. To this end phase-shift measurements were undertaken on a range of solid dielectric slabs including various types of stone, plastic and an artificial material. Permittivity predictions from this method were then compared to results from a one-port coaxial cell. As an additional comparison, and to better understand the results, the phase-shift test setup was also modelled using GPRMax software. To improve the predictions, reverberations within the test apparatus were minimized by isolating the direct wave using time-domain Blackman windowing. However, the narrow window necessary for this particular test setup also degraded the ability to detect frequency-dependent permittivity changes. Overall the phase-shift approach produced real relative permittivity predictions similar to that from the one-port coaxial cell. Despite limitations in the current approach, the results validate the phase-shift approach as a simple and rapid method of characterizing the permittivity of larger dielectric material samples of constant thickness.
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