Solving Big GIS Projects on Desktop Computers

Q4 Earth and Planetary Sciences Kartografija i Geoinformacije Pub Date : 2019-12-15 DOI:10.32909/kg.18.32.4
D. Bartoněk
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引用次数: 1

Abstract

We are witnessing great developments in digital information technologies. The situation encroaches on spatial data, which contain both attributive and localization features, and this determines their position unequally within an obligatory coordinate system. These changes have resulted in the rapid growth of digital data, significantly supported by technical advances regarding the devices which produce them. As technology for making spatial data advances, methods and software for big data processing are falling behind. Paradoxically, only about 2% of the total volume of data is actually used. Big data processing often requires high computation performance hardware and software. Only a few users possess the appropriate information infrastructure. The proportion of processed data would improve if big data could be processed by ordinary users. In geographical information systems (GIS), these problems arise when solving projects related to extensive territory or considerable secondary complexity, which require big data processing. This paper focuses on the creation and verification of methods by which it would be possible to process effectively extensive projects in GIS supported by desktop hardware and software. It is a project regarding new quick methods for the functional reduction of the data volume, optimization of processing, edge detection in 3D and automated vectorization.
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在台式计算机上解决大型GIS项目
我们正在目睹数字信息技术的巨大发展。这种情况侵犯了空间数据,这些数据既包含属性特征,又包含定位特征,这就不平等地决定了它们在强制性坐标系中的位置。这些变化导致了数字数据的快速增长,这在很大程度上得到了生产数字数据的设备技术进步的支持。随着空间数据技术的进步,大数据处理的方法和软件正在落后。矛盾的是,实际使用的数据量仅占总数据量的2%左右。大数据处理通常需要高计算性能的硬件和软件。只有少数用户拥有适当的信息基础架构。如果大数据可以由普通用户处理,那么处理后的数据比例就会提高。在地理信息系统(GIS)中,这些问题是在解决涉及广阔领土或相当大的次要复杂性的项目时出现的,这些项目需要大数据处理。本文的重点是创建和验证在桌面硬件和软件支持的GIS中有效处理广泛项目的方法。这是一个关于新的快速方法的项目,用于功能性地减少数据量、优化处理、3D边缘检测和自动矢量化。
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来源期刊
Kartografija i Geoinformacije
Kartografija i Geoinformacije Earth and Planetary Sciences-Geophysics
CiteScore
0.70
自引率
0.00%
发文量
6
审稿时长
12 weeks
期刊最新文献
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