GPR Application for Non-Rigid Road Pavement Condition Assessment

IF 0.5 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
D. Batrakov, M. Antyufeyeva, A. Batrakova
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引用次数: 0

Abstract

Abstract The main aim of the article is to demonstrate the effectiveness of the use of ground penetrating radars to assess various objects using the example of assessing the current state of highways. The article uses the software developed by the authors and the corresponding mathematical models. The analysis of the results obtained is based on mathematical models that have proven their effectiveness and is time-tested. It should be emphasised that the main problem in assessing roads with non-rigid pavement is associated with a change in the main parameters of the layers – thickness and dielectric constant. Previously, we proposed a scheme for the layer-by-layer determination of the values of the relative permittivity and then - the subsequent determination of the thickness of each layer, starting from the top layer and ending with the base. The paper presents the results of experiments actually carried out by the authors with various GPRs, which not only have different values of the central frequency, but also have significant design differences. In addition, the results of processing real data using the software developed by the authors are presented. As a result, an improved method of signal calibration has been proposed, which makes it possible to increase the reliability of assessing the thickness of road surfaces, as well as other objects.
探地雷达在非刚性路面状况评估中的应用
摘要本文以公路现状评估为例,论证了探地雷达对各种目标进行评估的有效性。本文采用作者开发的软件和相应的数学模型。对所得结果的分析是基于数学模型的,这些模型已经证明了它们的有效性并经过了时间的考验。应该强调的是,评估非刚性路面的主要问题与层的主要参数——厚度和介电常数的变化有关。在此之前,我们提出了一种逐层确定相对介电常数值,然后确定每层厚度的方案,从顶层开始,以底层结束。本文给出了作者用不同的GPRs实际进行的实验结果,这些GPRs不仅中心频率值不同,而且在设计上也有很大的差异。此外,还介绍了利用所开发的软件对实际数据进行处理的结果。因此,提出了一种改进的信号校准方法,使其能够提高评估路面以及其他物体厚度的可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Electrical Control and Communication Engineering
Electrical Control and Communication Engineering ENGINEERING, ELECTRICAL & ELECTRONIC-
自引率
14.30%
发文量
0
审稿时长
12 weeks
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