548-0004/04 – Remote Sensing (DPZ)

Gurantor departmentDepartment of GeoinformaticsCredits5
Subject guarantorIng. Lucie Orlíková, Ph.D.Subject version guarantorIng. Lucie Orlíková, Ph.D.
Study levelundergraduate or graduate
Study languageCzech
Year of introduction2002/2003Year of cancellation2018/2019
Intended for the facultiesUSP, HGFIntended for study typesBachelor
Instruction secured by
LoginNameTuitorTeacher giving lectures
HOR10 prof. Ing. Jiří Horák, Dr.
PEN63 Ing. Tomáš Peňáz, 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 12+0

Subject aims expressed by acquired skills and competences

The aim of the course is to acquire knowledge of the principles and methods of remote sensing and their application in solving practical problems. Students develop the ability to select and apply appropriate methods of image data processing, evaluate and interpret the information obtained, and critically assess the quality of input data and the results achieved.

Teaching methods

Lectures
Tutorials

Summary

The lessons are focused on an introduction to the study of remote sensing methods. The first part deals with physical principles required to understand the fundament of these methods. The second part is focused on technical conditions and tools for data acquisiton. Further part is dedicated to the methods of processing data from remote sensing especially methods and procedures of digital processing, including pre-processing of image data, its enhancement and classification methods. The final part describes interpretation and applications. Professional knowledge: The student explains the physical principles of remote sensing, describes the basic methods of acquiring remotely sensed imagery, and distinguishes between the main methods of image preprocessing, enhancement, classification, and interpretation. The student describes the potential applications of remote sensing methods in solving spatial and environmental problems. Professional skills: The student applies basic methods of digital processing of remotely sensed imagery, including preprocessing, enhancement, and classification. The student selects an appropriate processing workflow with respect to the characteristics of the data and the problem being addressed, evaluates the results obtained, and interprets them in a professional context. General competences: The student independently selects and professionally justifies an appropriate approach to solving problems using remote sensing data, critically evaluates the quality of input data and the reliability of the results, and professionally communicates the conclusions of the analysis.

Compulsory literature:

Liu J.G, Mason P.J.: Image Processing and GIS for Remote Sensing. Willey, 2016. ISBN 9781118724200. Lillesand T., Kiefer R., Chipman J.: Remote sensing and image interpretation. Wiley, 2015. Richards, J. A. Remote Sensing Digital Image Analysis. 6th ed. Cham: Springer, 2022. ISBN 978-3-030-82326-9. Jensen, J. R. Introductory Digital Image Processing: A Remote Sensing Perspective. 4th ed. Pearson, 2022. ISBN 978-0-13-755111-8. Duzgun S., Demirel N: Remote Sensing of the Mine Environment. CRC press, 2011.

Recommended literature:

De Lange, N. Geoinformatics in Theory and Practice: An Integrated Approach to Geoinformation Systems, Remote Sensing and Digital Image Processing. Berlin/Heidelberg: Springer, 2023. ISBN 978-3-662-65757-7. Petrelli, M. Machine Learning for Earth Sciences: Using Python to Solve Geological Problems. Cham: Springer, 2023. ISBN 978-3-031-35113-6. Andronache, C. (Ed.), 2018. Remote Sensing of Clouds and Precipitation, Springer Remote Sensing/Photogrammetry. Springer International Publishing, Cham. https://doi.org/10.1007/978-3-319-72583-3 Clevers, J: Overview RS-Basics Digital Lectures. Wageningen, 1999. On-line: http://www.geo-informatie.nl/courses/grs20306/lectures/overview.htm

Additional study materials

Way of continuous check of knowledge in the course of semester

testing, practical exercises with output controls and evaluation of results

E-learning

Other requirements

No additional requirements are imposed on the student.

Prerequisities

Subject has no prerequisities.

Co-requisities

Subject has no co-requisities.

Subject syllabus:

1) Electromagnetic radiation, electromagnetic spectrum. Radiometric units and indicators. 2) Sources of radiation. Interaction with environment. Reflection. Influence of atmosphere. Disperse in atmosphere. Absorption in atmosphere. Transmission function of the atmosphere. 3) Land objects and its identification and evaluation. 4) Data capturing. Camera. Film material. Type of images. Radiometer. Mechanic scanner. Electronic scanner 5) Geometrical errors during image capturing. 6) Carriers. Satellites and instruments. 7) Principles of remotely sensed data processing. The goal of Remote sensing. 8) Interpretation of still images. 9) Radar analysis. 10) Principles of digital image processing. 11) Image pre-processing. Image enhancement. Classification. 12) Application of Remote Sensing

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
2017/2018 (B2102) Mineral Raw Materials (3914R024) Landscape water management P Czech Ostrava 2 Choice-compulsory study plan
2016/2017 (B2102) Mineral Raw Materials (3914R024) Landscape water management P Czech Ostrava 2 Choice-compulsory study plan
2015/2016 (B2102) Mineral Raw Materials (3914R024) Landscape water management P Czech Ostrava 2 Choice-compulsory study plan
2014/2015 (B2102) Mineral Raw Materials (3914R024) Landscape water management P Czech Ostrava 2 Choice-compulsory study plan
2013/2014 (B2102) Mineral Raw Materials (3914R024) Landscape water management P Czech Ostrava 2 Choice-compulsory study plan
2012/2013 (B2102) Mineral Raw Materials (3914R024) Landscape water management P Czech Ostrava 2 Choice-compulsory study plan
2011/2012 (B2102) Mineral Raw Materials (3914R024) Landscape water management P Czech Ostrava 2 Choice-compulsory study plan
2009/2010 (N3908) Fire Protection and Industrial Safety (3908T007) Safety and Security Planning K Czech Ostrava 2 Choice-compulsory study plan
2009/2010 (N3908) Fire Protection and Industrial Safety (3908T007) Safety and Security Planning P Czech Ostrava 2 Choice-compulsory study plan
2009/2010 (N2102) Mineral Raw Materials (3901T037) Water - strategic resource P Czech Ostrava 2 Choice-compulsory study plan
2008/2009 (N2102) Mineral Raw Materials (3901T037) Water - strategic resource P Czech Ostrava 2 Choice-compulsory study plan
2008/2009 (N3908) Fire Protection and Industrial Safety (3908T007) Safety and Security Planning P Czech Ostrava 2 Choice-compulsory study plan
2007/2008 (N3646) Geodesy and Cartography (3646T001) Mine Surveying P Czech Ostrava 1 Choice-compulsory study plan
2007/2008 (N3646) Geodesy and Cartography (3646T007) Engineering Geodesy P Czech Ostrava 1 Choice-compulsory study plan
2005/2006 (N3646) Geodesy and Cartography (3646T001) Mine Surveying K Czech Ostrava 1 Choice-compulsory study plan
2004/2005 (N3646) Geodesy and Cartography (3646T001) Mine Surveying K Czech Ostrava 1 Choice-compulsory study plan
2003/2004 (N3646) Geodesy and Cartography (3646T001) Mine Surveying K Czech Ostrava 2 Compulsory study plan

Occurrence in special blocks

Block nameAcademic yearForm of studyStudy language YearWSType of blockBlock owner
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