Course: Computer Applications in Geodesy 1

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Course title Computer Applications in Geodesy 1
Course code KGM/AVTG1
Organizational form of instruction Lecture + Seminar
Level of course Bachelor
Year of study not specified
Semester Winter and summer
Number of ECTS credits 3
Language of instruction Czech
Status of course unspecified
Form of instruction Face-to-face
Work placements This is not an internship
Recommended optional programme components None
Lecturer(s)
  • Koucký Petr, Ing. Ph.D.
Course content
Data formats for working with spatial and measurement data (measured data formats and lists of coordinates). Processing of basic coordinate calculations in the chosen software. Determination of similar, affine and projective transformations, including the derivation of parameters using adjustment calculus. Introduction to selected geospatial software. Processing of geodetic measurements from the field practice from Nectiny.

Learning activities and teaching methods
Cooperative instruction, Project-based instruction, Lecture with visual aids, Practicum
  • Preparation for comprehensive test (10-40) - 10 hours per semester
  • Contact hours - 39 hours per semester
  • Practical training (number of hours) - 5 hours per semester
  • Preparation for laboratory testing; outcome analysis (1-8) - 8 hours per semester
  • Undergraduate study programme term essay (20-40) - 20 hours per semester
prerequisite
Knowledge
popsat způsob výpočtu polygonového pořadu
popsat způsob měření polární a tachymetrickou metodou
vysvětlit význam vyrovnávacího počtu
Skills
ovládat souřadnicové výpočty v rovině
využívat lineárních transformací souřadnic
learning outcomes
Knowledge
Editing of self-collected geospatial data in geodetic software
Processing of self-collected geospatial data in geodetic software
Calculation of geodetic tasks from manually collected geospatial data in geodetic software
Analysis of results of calculations of geodetic tasks in geodetic software
Skills
practically use GNU Gamma Dolu software
process coordinate calculations using the available software
practically use Kokeš software to calculate polygon programs
practically use Kokeš software to calculate tasks based on the polar method
practically use Kokeš software to align measuring networks
practically use Kokeš software to calculate tasks based on the tachymetric method
practically use Kokeš software to transform raster and vector data
practically use Kokeš software to create drawings
Competences
N/A
teaching methods
Knowledge
Lecture with visual aids
Practicum
Self-study of literature
Interactive lecture
Skills
Practicum
Cooperative instruction
Project-based instruction
Skills demonstration
Competences
Project-based instruction
assessment methods
Knowledge
Combined exam
Skills
Seminar work
Skills demonstration during practicum
Combined exam
Competences
Seminar work
Recommended literature
  • Online katalogy knihoven.
  • ČSN 01 3411 Mapy velkých měřítek. Kreslení a značky.
  • Grafický systém Kokeš pro Windows.. Gepro, s.r.o.
  • Interní výukové materiály.
  • Návod pro obnovu katastrálního operátu, ČÚZK č.j. 21/1997.
  • Dušek R., Vlasák J. Geodezie 40 (Příklady a návody na cvičení). ČVUT Praha, 1998.
  • Huml, Milan. Mapování a kartografie. Vyd. 1, dotisk. Praha : Vydavatelství ČVUT, 2003. ISBN 80-01-02383-4.


Study plans that include the course
Faculty Study plan (Version) Category of Branch/Specialization Recommended year of study Recommended semester