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Balázsik, Valéria
Dr. Tóth, Zoltán
Orosz, Gábor Tamás
2026-08-25T12:09:00Z
2026-08-25T12:09:00Z
2019
http://hdl.handle.net/20.500.14044/40246
Urban development and management require the handling of complex spatial related objects as well. Nowadays there are data acquisition and data process technologies, which can satisfy such demands. The methods of data acquisition typically provide additional information for GIS beyond geometric data. During the data processing we can get further possibilities. Data from different source can be managed jointly and the information content of the data can be multiplied. Formal times, production of the corresponding high-quality data of the objects was a time consuming and expensive procedure. GIS data acquisition technologies such as Lidar, digital photogrammetry, remote sensing, terrestrial laser scanning and GNSS positioning enable to produce a complex spatial urban database with high resolution and high accuracy. Certainly, the data collection equipment may be still costly, but due to the efficiency of the acquisition method, the measurement time can dramatically be shortened. It is also an important aspect that a complex database enables multiple analysis so that the database can serve multiple disciplines. In this study we present some of the data acquisition and data processing technologies, which are suitable to integrate into an urban database and can provide useful information for a wide range of applications through analysis and visualization. In urban development several factors need to be considered simultaneously, such as infrastructure, environment, heritage preservation, etc. Different spatial display capabilities can illustrate object of interests one-by- one, but also it is possible to model its surroundings as well. This way such tools can be used efficiently for urban planning by the municipal decision makers. In this study, we will present how to collect and how to utilize different resolution data (Lidar, close range and aerial photogrammetry, terrestrial laser scanning) in urban areas, how to create 3 dimensional models of objects or how to generate surface model of the city based on different data. There are examples presented indicating how to use different combinations of geometric, spectral and topographic data in practice.hu_HU
dc.formatpdfhu_HU
enhu_HU
Remote sensing data in the urban GIShu_HU
Open accesshu_HU
Óbudai Egyetemhu_HU
2019. November 14.hu_HU
Székesfehérvárhu_HU
Alba Regia Műszaki Karhu_HU
Óbudai Egyetemhu_HU
Műszaki tudományok - gépészeti tudományokhu_HU
datahu_HU
urbanhu_HU
sensinghu_HU
developmenthu_HU
Konferenciaközleményhu_HU
AIS 2019 14th International Symposium on Applied Informatics and Related Areas organized in the frame of Hungarian Science Festival 2019 by Óbuda University Proceedingshu_HU
local.tempfieldCollectionsKönyvrészletekhu_HU
16.hu_HU
Kiadói változathu_HU
6 p.hu_HU
AIS 2019 14th International Symposium on Applied Informatics and Related Areas organized in the frame of Hungarian Science Festival 2019 by Óbuda Universityhu_HU
978-963-449-156-9hu_HU
2019hu_HU
Óbudai Egyetemhu_HU
Székesfehérvárhu_HU


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