Dynamic mapping of disturbed lands using remote sensing data

O. Artemeva, A. Bakulev, Natalya Pozdnyakova, Sergey Tyurin
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Abstract

Due to the increase in the areas of disturbed lands, the relevance of developing methods and methods for obtaining and analyzing spatial data in order to make decisions on rational nature management is increasing every year. Monitoring of natural and anthropogenic systems is largely related to the collection, analysis and visualization of dynamic processes, so the technologies for compiling of dynamic maps are at the peak of relevance. A number of factors necessitate the using of dynamic geoimages. Firstly, these images are an inseparable combination of spatial-temporal links on the certain areas. Secondly, it is the possibility of a full-fledged analysis of spatial changes taking into account time. Thirdly, it is the forecasting of natural and socio-economic factors and phenomena. In addition, dynamic mapping opens up opportunities for multimedia data visualization, which increases the observer’s perception of geoimages by several times with the focus on specific objects. Remote sensing data is one of the main sources for compiling and updating thematic dynamic maps. This article demonstrates the development of the method for creating working layers used in geographic information systems (GIS) for compiling dynamic maps using remote sensing data. The authors note a distinctive feature of the methodology: it is aimed at a wide range of users who do not fully have the skills and abilities to work with remote sensing data. These are managers of any level, whose direct work is not related to the compiling of geo-images, but whose competence is to make managerial decisions. Another advantage of the described methods is its implementation in an open source GIS (QGIS), as well as its application not only for single images, but also for a mosaic image. The article presents a description of the entire path from image processing to the creation of visual images. Disturbed lands of the Zabaykalsky Krai of the Russian Federation were chosen as a special example of working polygons. These territories have a large number of environmental problems, causing an increase in the areas of disturbed lands: open pits, an increase in the number of mining and processing factories, degradation of agricultural and forest lands due to anthropogenic activities and erosion processes, active seismic processes, mudflows and avalanche hazard.
利用遥感数据动态制图受干扰土地
由于受干扰土地面积的增加,开发获取和分析空间数据以做出合理自然管理决策的方法和方法的相关性每年都在增加。对自然和人为系统的监测在很大程度上与动态过程的收集、分析和可视化有关,因此编制动态地图的技术正处于相关的高峰。有许多因素需要使用动态地理图像。首先,这些图像是在一定区域上的时空联系的不可分割的组合。其次,它是考虑到时间的空间变化的全面分析的可能性。第三,是对自然和社会经济因素和现象的预测。此外,动态映射为多媒体数据可视化提供了机会,它可以将观察者对地理图像的感知提高几倍,并将焦点集中在特定对象上。遥感数据是编制和更新专题动态地图的主要来源之一。本文演示了创建用于地理信息系统(GIS)的工作层的方法的发展,用于使用遥感数据编制动态地图。这组作者指出了该方法的一个显著特点:它针对的是不完全具备处理遥感数据的技能和能力的广泛用户。这些是任何级别的管理人员,他们的直接工作与地理图像的编制无关,但他们的能力是做出管理决策。所述方法的另一个优点是其在开源GIS (QGIS)中的实现,以及它不仅适用于单个图像,而且适用于拼接图像。本文描述了从图像处理到视觉图像创建的整个过程。俄罗斯联邦扎贝卡尔斯基边疆区受干扰的土地被选为工作多边形的特殊例子。这些领土有大量的环境问题,造成受干扰土地面积的增加:露天坑、采矿和加工厂数量的增加、由于人为活动和侵蚀过程、活跃的地震过程、泥石流和雪崩危险造成的农田和林地退化。
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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0.90
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0.00%
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2
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