INFORMATION TECHNOLOGY OF TRANSPORT INFRASTRUCTURE MONITORING BASED ON REMOTE SENSING DATA

IF 0.2 Q4 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE Radio Electronics Computer Science Control Pub Date : 2022-12-15 DOI:10.15588/1607-3274-2022-4-7
S. Danshyna, A. Nechausov, S. Andrieiev
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引用次数: 1

Abstract

Context. In the light of current road network monitoring practices, this study aims to explore the capability of remote sensing technologies to solve the problems of increasing the objectivity of preliminary evaluations of the condition of the infrastructure as a whole. The object of the study was to process the monitoring of transport infrastructure (TI) to find ways to improve it in the implementation of development projects. Objective. The goal of the work is to increase objectivity of decision-making on the evaluation, reconstruction, development of the transport network structure due to the visual presentation and disclosure of open data for monitoring the transport value. Method. Existing approaches to TI monitoring and evaluating its condition are analyzed. The identified shortcomings, as well as the development of remote sensing technologies, open up prospects for the use of remote sensing data in the TI monitoring process. A set-theoretic model of the monitoring process information flows is proposed, the consistent refinement of the elements of which made it possible to develop information technology (IT). Formation of a set of input and output parameters of IT, the set of its operations, their representation with IDEFX-models set explains how a set of heterogeneous (graphic, text, digital, cartographic, etc.) data about TI elements coming from different sources are processed and presented to support decision-making on the survey of existing infrastructure and its improvement. The developed IT makes it possible to obtain complex indicators for analyzing the TI of a particular area, to solve the problems of inventorying objects, TI and its elements modeling, taking into account the physical and geographical location, which makes it possible to consider it as an auxiliary tool that complements existing methods of TI monitoring. Results. The developed IT was studied in solving the problem of monitoring the TI section of the Kharkiv region using satellite imagery of medium (Sentinel–2) and high (SuperView-1) resolution and the results of laser survey of the road bridge across the river Mzha (as an element of infrastructure). Conclusions. The conducted experiments confirmed the operability of the proposed information technology and showed expediency of its practical use in solving the problems of obtaining generalizing characteristics of the infrastructure, inventory of TI objects and their modeling. This opens up opportunities for substantiating project decisions for the reconstruction of the transport network and planning procedures for examining its condition. Prospects for further research may include: creating reference models of TI objects, expanding the table of decryption signs of road transport infrastructure objects, integrating remote data, survey results of TI sections and engineering surveys of objects to obtain evaluations of the condition of TI in general.
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基于遥感数据的交通基础设施监测信息技术
上下文。结合当前路网监测实践,本研究旨在探索遥感技术在提高基础设施整体状况初步评价客观性方面的能力。这项研究的目的是处理对运输基础设施的监测,以便在实施发展项目时找到改进它的方法。目标。这项工作的目标是通过可视化展示和公开监测运输价值的数据,提高交通网络结构评估、重建和发展决策的客观性。方法。分析了现有的TI监测和评估方法。已确定的缺点以及遥感技术的发展为在TI监测过程中使用遥感数据开辟了前景。提出了一种监控过程信息流的集合论模型,该模型对其要素进行了一致的细化,使信息技术的发展成为可能。IT的一组输入和输出参数的形成,它的操作集合,它们用idefx模型集的表示解释了如何处理和呈现来自不同来源的关于TI元素的一组异构(图形、文本、数字、地图等)数据,以支持对现有基础设施的调查及其改进的决策。发达的IT可以获得复杂的指标来分析特定地区的TI,解决对象的盘点问题,考虑到物理和地理位置的TI及其元素建模,这使得它可以作为一种辅助工具来补充现有的TI监测方法。结果。利用中分辨率(Sentinel-2)和高分辨率(SuperView-1)卫星图像和横跨Mzha河的公路桥(作为基础设施的组成部分)的激光测量结果,研究了开发的信息技术,以解决监测哈尔科夫地区TI部分的问题。结论。实验验证了所提出的信息技术的可操作性,并显示了其在解决基础设施的泛化特征、TI对象的清单及其建模等问题上的便捷性。这为重建交通网络的项目决策和检查其状况的规划程序提供了机会。进一步研究的前景可能包括:建立TI对象的参考模型,扩展道路交通基础设施对象的解密标志表,整合远程数据、TI断面调查结果和对对象的工程调查结果,获得对TI总体状况的评估。
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来源期刊
Radio Electronics Computer Science Control
Radio Electronics Computer Science Control COMPUTER SCIENCE, HARDWARE & ARCHITECTURE-
自引率
20.00%
发文量
66
审稿时长
12 weeks
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