Non-destructive control of roads by georadars (review article, part I)

D. Batrakov, М. Kovalov, А.О. Maslennikov, А.G. Batrakova, S. Urdzik
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Abstract

Relevance. The relevance of the studies outlined in the article is due to their focus on the implementation of the state strategy for ensuring the reliability and extending the resource of transport and engineering structures, the implementation of which is associated with the methods and means of obtaining information and processing it in real time; methods for assessing the state of engineering structures, a feature of which is a significant heterogeneity of geometric and physical-mechanical parameters, which complicates the use of diagnostic results. With the obvious advantages of wave sounding methods, their application is constrained by the complexity of the tasks of interpreting the results obtained and the associated errors in determining the parameters of structures; the multifactorial nature of the problems of evaluating the parameters of multicomponent materials of structures, the imperfection of flaw detection methods. Purpose of work – a review of the capabilities of modern georadars and means of processing ultra-wideband signals together with computer-oriented systems for numerical modeling, optimization of methods for processing georadar data for solving problems of detecting and identifying subsurface irregularities in building structures that are a flat-layered medium. Materials and methods. The first part of the article provides a brief overview of the main methods of processing data sets obtained using pulsed GPR. A new method of data processing using specialized software is proposed GeoVizy. The possibilities of using the methods of the modern theory of diffraction and methods of signal analysis in the space-time domain for solving the problems of flaw detection are also briefly considered. Results. The results obtained in this work are based on remote sensing data, proposed mathematical models and methods for processing sensing data. Based on the results of the comparative analysis of the capabilities of georadars, practical recommendations were proposed to improve the reliability of the data sets obtained, and possible directions for further research were substantiated. Conclusions. The results of numerical modeling and laboratory experiments obtained in this work confirmed the previously stated theoretical assumptions about the degree of influence of the key parameters of ultra-wideband GPR on the reliability of the results obtained. The significance of the new scientific results obtained consists not only in the use of new sensing means and new models of processing and subsequent interpretation of the data obtained, but also in the considered prospects for progress in the field of non-destructive testing and diagnostics.
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地质雷达对道路的无损控制(评论文章,第一部分)
的相关性。文章中概述的研究的相关性是由于它们侧重于实施确保可靠性和扩展运输和工程结构资源的国家战略,其实施与获取信息和实时处理信息的方法和手段有关;评估工程结构状态的方法,其特征是几何和物理力学参数的显著异质性,这使诊断结果的使用复杂化。波浪测深方法具有明显的优势,但其应用受到解释结果任务的复杂性和确定结构参数的相关误差的限制;多组分结构材料参数评估问题的多因素性,缺陷检测方法的不完善。工作目的-回顾现代地质雷达的能力和处理超宽带信号的手段,以及用于数值模拟的计算机导向系统,优化处理地质雷达数据的方法,以解决探测和识别建筑结构中平面层状介质中的地下不规则性的问题。材料和方法。文章的第一部分简要概述了脉冲探地雷达数据集处理的主要方法。提出了一种利用专用软件GeoVizy进行数据处理的新方法。本文还简要讨论了利用现代衍射理论方法和空时域信号分析方法解决探伤问题的可能性。结果。本文以遥感数据为基础,提出了处理遥感数据的数学模型和方法。在对各地质雷达性能进行对比分析的基础上,提出了提高数据集可靠性的实用建议,并提出了进一步研究的可能方向。本文的数值模拟和室内实验结果证实了先前关于超宽带探地雷达关键参数对所得结果可靠性影响程度的理论假设。获得的新科学成果的意义不仅在于使用新的传感手段和新的处理模型以及随后对所获得的数据的解释,而且还在于考虑到无损检测和诊断领域的进展前景。
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