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Please use this identifier to cite or link to this item: https://oldena.lpnu.ua/handle/ntb/45908
Title: Estimation accuracy of orthotransformation of space images applying satellite Pleiades-1 by GNSS surveying
Other Titles: Оцінювання точності апаратного ортотрансформування космічного знімка, отриманого із супутника Pleiades-1 за допомогою ГНСС-знімання
Authors: Четверіков, Б.
Ломпас, О.
Процик, М.
Тетерук, Д.
Chetverikov, B.
Lompas, O.
Protsyk, M.
Teteruk, D.
Affiliation: Національний університет “Львівська політехніка”
Lviv Polytechnic National University
Bibliographic description (Ukraine): Estimation accuracy of orthotransformation of space images applying satellite Pleiades-1 by GNSS surveying / B. Chetverikov, O. Lompas, M. Protsyk, D. Teteruk // Geodesy, cartography and aerial photography. — Lviv : Lviv Politechnic Publishing House, 2019. — Vol 89. — P. 36–43.
Bibliographic description (International): Estimation accuracy of orthotransformation of space images applying satellite Pleiades-1 by GNSS surveying / B. Chetverikov, O. Lompas, M. Protsyk, D. Teteruk // Geodesy, cartography and aerial photography. — Lviv : Lviv Politechnic Publishing House, 2019. — Vol 89. — P. 36–43.
Is part of: Геодезія, картографія і аерофотознімання (89), 2019
Geodesy, cartography and aerial photography (89), 2019
Journal/Collection: Геодезія, картографія і аерофотознімання
Volume: 89
Issue Date: 28-Feb-2019
Publisher: Видавництво Львівської політехніки
Lviv Politechnic Publishing House
Place of the edition/event: Львів
Lviv
UDC: 528.92
Keywords: ортотрансформація
оцінювання точності координат Pleiades-1
RPC-коефіцієнти
orthotransformation
Pleiades-1 estimation of coordinate accuracy
RPC-coefficients checkpoint
Number of pages: 8
Page range: 36-43
Start page: 36
End page: 43
URI: https://ena.lpnu.ua/handle/ntb/45908
References (Ukraine): Gnatushenko, V. V. (2009) Geometrical models of
formation and preliminary processing digital
photogrammetric images of the high spatial
resolution. Kyiv.
Grodecki, J., & Dial G.Block (2003). Adjustment of
High-Resolution Satellite Images Described by
Rational Polynomials Photogrammetric Engineering
& Remote Sensing. 69, 1. 59–68.
Blackett Shane Allan. (1996). Rational Polynomials.
Department of Engineering Science Uniservices Ltd.
University of Auckland New Zealand February.
Lutes, J. (2004). Accuracy analysis of rational
polynomial coefficients for IKONOS imagery.
ASPRS Annual Conference Proceedings. May.
Denver, Colorado. 34–42.
Michele Bianconi, Mattia Crespi, Francesca
Fratarcangeli, Francesca Giannone, & Francesca
Pieralice. (2008). A new strategy for rational
polynomial coefficients generation. Remote Sensing –
New Challenges of High Resolution. Bochum. 21–28.
Pilicheva M. Geometrical correction of the space
images. Geodesy, Architecture and Construction:
materials of the II International Conference of Young
Scientists GAC-2009, May 14–16, 2009, Ukraine,
Lviv / Lviv Polytechnic National University. – Lviv:
Publishing House of the National University “Lviv
Polytechnic”, 2009. – P. 140–143.
Shirokova T., Chermoshentsev A. L. Investigation of
technology for processing high-resolution satellite
images using rational functions. News of educational
institutions. Section surveying and aerofotosemka.
The publication of the Moscow State University of
Geodesy and Cartography. 2, 99–103.
Tao Vincent C. & Yong Hu. (2001). A Comprehensive
Study of the Rational Function Model for
Photogrammetric Processing. Photogrammetric
engineering & Remote sensing. 1347–1357.
Toutin, T. (2004). Geometric processing of remote
sensing images: models, algorithms and methods.
Remote sensing. 1893–1924.
Voronin, A. A., Egoshkin, N. A., Yeremeyev, V. V., &
Moskatiniev, I. V. (2009). Geometric data processing
from space systems of global Earth observation.
Bulletin of the RSGRU, (1), 12–17.
Xutong, Niu, Jue, Wang, Kaichang Di, Jin-Duk Lee, &
Ron L. (2004). Geometric modelling and photogrammetric
processing of high-resolution satellite
imagery. ISPRS. Commission IV, WG IV/7. 1–6.
References (International): Gnatushenko, V. V. (2009) Geometrical models of
formation and preliminary processing digital
photogrammetric images of the high spatial
resolution. Kyiv.
Grodecki, J., & Dial G.Block (2003). Adjustment of
High-Resolution Satellite Images Described by
Rational Polynomials Photogrammetric Engineering
& Remote Sensing. 69, 1. 59–68.
Blackett Shane Allan. (1996). Rational Polynomials.
Department of Engineering Science Uniservices Ltd.
University of Auckland New Zealand February.
Lutes, J. (2004). Accuracy analysis of rational
polynomial coefficients for IKONOS imagery.
ASPRS Annual Conference Proceedings. May.
Denver, Colorado. 34–42.
Michele Bianconi, Mattia Crespi, Francesca
Fratarcangeli, Francesca Giannone, & Francesca
Pieralice. (2008). A new strategy for rational
polynomial coefficients generation. Remote Sensing –
New Challenges of High Resolution. Bochum. 21–28.
Pilicheva M. Geometrical correction of the space
images. Geodesy, Architecture and Construction:
materials of the II International Conference of Young
Scientists GAC-2009, May 14–16, 2009, Ukraine,
Lviv, Lviv Polytechnic National University, Lviv:
Publishing House of the National University "Lviv
Polytechnic", 2009, P. 140–143.
Shirokova T., Chermoshentsev A. L. Investigation of
technology for processing high-resolution satellite
images using rational functions. News of educational
institutions. Section surveying and aerofotosemka.
The publication of the Moscow State University of
Geodesy and Cartography. 2, 99–103.
Tao Vincent C. & Yong Hu. (2001). A Comprehensive
Study of the Rational Function Model for
Photogrammetric Processing. Photogrammetric
engineering & Remote sensing. 1347–1357.
Toutin, T. (2004). Geometric processing of remote
sensing images: models, algorithms and methods.
Remote sensing. 1893–1924.
Voronin, A. A., Egoshkin, N. A., Yeremeyev, V. V., &
Moskatiniev, I. V. (2009). Geometric data processing
from space systems of global Earth observation.
Bulletin of the RSGRU, (1), 12–17.
Xutong, Niu, Jue, Wang, Kaichang Di, Jin-Duk Lee, &
Ron L. (2004). Geometric modelling and photogrammetric
processing of high-resolution satellite
imagery. ISPRS. Commission IV, WG IV/7. 1–6.
Content type: Article
Appears in Collections:Геодезія, картографія і аерофотознімання. – 2019. – Випуск 89

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