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Teledetekcyjne metody rejestracji krajobrazu

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Warianty tytułu
EN
Remote sensing methods of landscape recording
Języki publikacji
PL
Abstrakty
EN
The paper presents remote sensing (RS) methods as a tool for landscape recording. The .multi. concept has been used to show the universality of RS techniques. They can be characterized as: multilevel and multiplatform, multispectral, multisensor, multiresolution, multiscale and multitemporal. One can choose the best level or platform to acquire images with spatial extend and level of detail matching the application . from recording large areas (regions) to single objects (e.g. buildings). The landscape images may be acquired in many spectral bands ranging from ultraviolet, through visible, short- and middle-wave infra-red, thermal infra-red to microwave. This multispectral character of RS images can be seen as the main advantage of this technique. One can choose from a wide range of sensors (both analogue and digital) to benefit from the acquired complementary information. Merging of multispectral and high-resolution panchromatic images can be mentioned as an example. Satellite images can be treated as multiscale, multilevel, hierarchical models of landscape structure. Multiscale (multiresolution) image segmentation may be used to recognise the landscape structure. Moreover, multitemporal images make it possible to detect its changes. They may also be used in dynamic processes studies. It should be stressed that remote sensing methods of landscape recording enable us to obtain objective data (metric if needed) in short time. Once gathered, the data may be used many times, even for purposes different than the original ones (reinterpretation). All presented features make remote sensing an ideal tool for recording landscape components and relations between them.
Czasopismo
Rocznik
Strony
67--78
Opis fizyczny
Bibliogr. 24 poz.
Twórcy
autor
autor
  • Wydział Geodezji Górniczej i Inżynierii Środowiska, Akademia Górniczo-Hutnicza, mularz@agh.edu.pl
Bibliografia
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  • Barredo J.I., Lavalle C., Demicheli L., Kasanko M., McCormick N., 2003: Sustainable urban and regional planning: The MOLAND activities on urban scenario modelling and forecast. European Commision, Joint Reseach Centre, Institute for Environment and Sustainability. Office for Official Publications of the European Communities, Luxembourg.
  • Béthune S., Muller F., Donnay J.P., 1998: Fusion of multispectral and panchromatic images by local mean and variance matching filtering techniques. Fusion of Earth Data, Sophia Antipolis.
  • Blaschke T., Lang S. Möller M., 2005: Object-based analysis of Remote sensing data for landscape monitoring: recent developments. Anais XII Simpósio Brasileiro de Sesoriamento Remoto, Goiânia, Brasil, 16-21 abril 2005, INPE.
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  • Olędzki J.R., 1992: Geograficzne uwarunkowania zróżnicowania obrazu satelitarnego Polski i jego podziału na jednostki fotomorficzne. Wydawnictwa Uniwersytetu Warszawskiego.
  • Olędzki J.R., 2001: Regiony fotomorficzne Polski. Klub Teledetekcji Środowiska Polskiego Towarzystwa Geograficznego. Warszawa.
  • Pradines D., 1986: Improving SPOT images size and multispectral resolution, Proceedings of the S.P.I.E. Earth Remote Sensing using Landsat Thematic Mapper and SPOT Systems, Vol. 660.
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Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPW8-0005-0085
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