544-0079/05 – Photogrammetry (FGM)

Gurantor departmentDepartment of Geodesy and Mine SurveyingCredits5
Subject guarantordoc. Ing. Roman Kapica, Ph.D.Subject version guarantordoc. Ing. Roman Kapica, Ph.D.
Study levelundergraduate or graduate
Study languageCzech
Year of introduction2006/2007Year of cancellation2024/2025
Intended for the facultiesHGFIntended for study typesBachelor
Instruction secured by
LoginNameTuitorTeacher giving lectures
KAP74 doc. Ing. Roman Kapica, Ph.D.
Extent of instruction for forms of study
Form of studyWay of compl.Extent
Full-time Credit and Examination 2+2
Part-time Credit and Examination 6+6

Subject aims expressed by acquired skills and competences

The aim of the course is to provide a fundamental framework for understanding photogrammetry as a method for acquiring and processing spatial information from imagery. Emphasis is placed on the principles underlying the formation and geometry of photogrammetric images, their spatial configuration, and basic methods of image evaluation. Particular attention is given to understanding the relationships between image properties, image orientation, stereoscopic perception, and the extraction of image-based and spatial information. The course provides a foundation for further study of advanced photogrammetric methods and their applications in surveying and geodesy.

Teaching methods

Lectures
Individual consultations
Tutorials
Project work

Summary

Odborné znalosti základních principů pozemní, jednosnímkové a průsekové fotogrammetrie, vlastností fotogrammetrických komor a principů jejich vnitřní a vnější orientace. Odborné znalosti a porozumění základům stereoskopického vidění, optické korelace obrazu, aerotriangulace a využití vlícovacích bodů při fotogrammetrickém zpracování. Odborné dovednosti při práci s pozemními a leteckými snímky, obrazovými a prostorovými daty a při aplikaci základních fotogrammetrických postupů. Obecné způsobilosti k samostatnému posouzení vhodnosti základních fotogrammetrických postupů a k interpretaci výsledků jejich zpracování.

Compulsory literature:

KAPICA, Roman, Marcel BREJCHA a Václav ŠAFÁŘ. Letecká fotogrammetrie a TLS [online]. Ostrava: VŠB – Technická univerzita Ostrava, 2021. Dostupné z: https://db.opvvv.msmt.cz/vystup/1494 [cit. 2026-08-21]. PAVELKA, Karel. Fotogrammetrie 1. V Praze: České vysoké učení technické, 2009. ISBN 978-80-01-04249-6. GOJDA, Martin, David NOVÁK, Martin KUNA, Pavel VAVŘÍN a Jarmila BÍŠKOVÁ. Metodika zpracování a evidence dat leteckého průzkumu v archeologii [online]. Praha: Archeologický ústav AV ČR, v. v. i., 2022. Dostupné z: https://invenio.nusl.cz/record/510673 [cit. 2026-08-27]. GRUBESIC, Tony H. a Jake R. NELSON. UAVs and Urban Spatial Analysis: An Introduction. Cham: Springer, 2020. ISBN 978-3-030-35864-8.

Recommended literature:

ÚŘAD PRO CIVILNÍ LETECTVÍ. Dokument EASA eRules – eRules UAS CS: české znění [online]. Praha: Úřad pro civilní letectví, 2026. Dostupné z: https://www.caa.gov.cz/provoz/bezpilotni-letadla/online-skoleni-a-informace-k-vyuziti/dokument-easa-erules/ [cit. 2026-08-27]. BREJCHA, Marcel, Vladimír BRŮNA, Zdeněk MAREK a Bára VĚTROVSKÁ. Metodika digitalizace, 3D dokumentace a 3D vizualizace jednotlivých typů památek. Ústí nad Labem: NPÚ, ÚOP v Ústí nad Labem, 2015. ISBN 978-80-7414-954-2. ČÚZK. Terminologický slovník zeměměřictví a katastru nemovitostí [online]. Praha: Český úřad zeměměřický a katastrální. Dostupné z: https://www.slovnikcuzk.eu/ [cit. 2026-08-21]. WU, Bo. Photogrammetry for 3D Mapping in Urban Areas. In: SHI, Wenzhong, Michael F. GOODCHILD, Michael BATTY, Mei-Po KWAN a Anshu ZHANG (eds.). Urban Informatics [online]. Singapore: Springer, 2021, s. 401–413. DOI 10.1007/978-981-15-8983-6_23. Dostupné z: https://link.springer.com/chapter/10.1007/978-981-15-8983-6_23 [cit. 2026-08-21].

Additional study materials

Way of continuous check of knowledge in the course of semester

Follow-up tasks processed in the exercise.

E-learning

Other requirements

Follow-up tasks processed in the exercise.

Prerequisities

Subject has no prerequisities.

Co-requisities

Subject has no co-requisities.

Subject syllabus:

Lectures: 1. Basiscs of Photogrammetry and use in practice. 2. Properties of photogrammetric cameras. Elements of interior and exterior orientation. 3. Terrestrial photogrammetry. Mathematical Foundations of Photogrammetry 4. Single image photogrammetry. 5. Intersection photogrammetry. 6. Optical correlation systems. 7. Natural and artifical stereoscopic vision. Stereoscopic instruments. 8. Terrestrial and aerial cameras. Aerial Carrar. Digital cameras. 9. Aerial photogrammetry. Flight mission, project planning and implementation. 10. Field reconnaissance and preparation of the project. Digital processing of aerial photographs. 11. Aerotriangulation. 12. Properties of terrestial and aerial photography. Image and spatial data. 13. Ground control points.

Conditions for subject completion

Conditions for completion are defined only for particular subject version and form of study

Occurrence in study plans

Academic yearProgrammeBranch/spec.Spec.ZaměřeníFormStudy language Tut. centreYearWSType of duty
2021/2022 (B1316) Geodesy, Cartography and Geoinformatics (3646R006) Geoinformatics K Czech Ostrava 1 Compulsory study plan
2020/2021 (B1316) Geodesy, Cartography and Geoinformatics (3646R006) Geoinformatics K Czech Ostrava 1 Compulsory study plan
2019/2020 (B1316) Geodesy, Cartography and Geoinformatics (3646R006) Geoinformatics K Czech Ostrava 1 Compulsory study plan
2018/2019 (B1316) Geodesy, Cartography and Geoinformatics (3646R006) Geoinformatics K Czech Ostrava 1 Compulsory study plan
2017/2018 (B1316) Geodesy, Cartography and Geoinformatics (3646R006) Geoinformatics K Czech Ostrava 1 Compulsory study plan
2016/2017 (B1316) Geodesy, Cartography and Geoinformatics (3646R006) Geoinformatics K Czech Ostrava 1 Compulsory study plan
2015/2016 (B1316) Geodesy, Cartography and Geoinformatics (3646R006) Geoinformatics K Czech Ostrava 1 Compulsory study plan
2014/2015 (B1316) Geodesy, Cartography and Geoinformatics (3646R006) Geoinformatics K Czech Ostrava 1 Compulsory study plan
2013/2014 (B3646) Geodesy and Cartography (3646R006) Geoinformatics K Czech Ostrava 1 Compulsory study plan
2012/2013 (B3646) Geodesy and Cartography (3646R006) Geoinformatics K Czech Ostrava 1 Compulsory study plan
2011/2012 (B3646) Geodesy and Cartography (3646R006) Geoinformatics K Czech Ostrava 1 Compulsory study plan
2010/2011 (B3646) Geodesy and Cartography (3646R006) Geoinformatics K Czech Ostrava 1 Compulsory study plan
2009/2010 (B3646) Geodesy and Cartography (3646R006) Geoinformatics K Czech Ostrava 1 Compulsory study plan
2009/2010 (N3646) Geodesy and Cartography (3602T004) Mobile Geoinformatics Technology P Czech Ostrava 1 Choice-compulsory study plan
2008/2009 (B3646) Geodesy and Cartography (3646R006) Geoinformatics K Czech Ostrava 1 Compulsory study plan
2008/2009 (N3646) Geodesy and Cartography (3602T004) Mobile Geoinformatics Technology P Czech Ostrava 1 Choice-compulsory study plan
2007/2008 (B3646) Geodesy and Cartography (3646R006) Geoinformatics K Czech Ostrava 1 Compulsory study plan
2007/2008 (N3646) Geodesy and Cartography (3602T004) Mobile Geoinformatics Technology P Czech Ostrava 1 Choice-compulsory study plan
2006/2007 (B3646) Geodesy and Cartography (3646R006) Geoinformatics K Czech Ostrava 1 Compulsory study plan

Occurrence in special blocks

Block nameAcademic yearForm of studyStudy language YearWSType of blockBlock owner
ECTS - FMG 2018/2019 Full-time English Optional 501 - Study Office stu. block
ECTS - FMG 2017/2018 Full-time English Optional 501 - Study Office stu. block
ECTS - FMG 2016/2017 Full-time English Optional 501 - Study Office stu. block
O - ECTS FMG 2015/2016 Full-time Czech Optional 501 - Study Office stu. block
O - ECTS FMG - Bc. 2014/2015 Full-time Czech Optional 501 - Study Office stu. block
O - ECTS FMG - Bc. 2013/2014 Full-time Czech Optional 501 - Study Office stu. block
O - ECTS FMG - Bc. 2012/2013 Full-time Czech Optional 501 - Study Office stu. block

Assessment of instruction



2015/2016 Winter
2013/2014 Winter
2009/2010 Winter