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  • Handbook for the Master programme

    Geodesy and Geoinformatics Faculty for Civil Engineering and Geodetic Science 2015

    PREVIEW This handbook is available on our homepage: www.gug.uni-hannover.de Date: 31.03.2015

  • Impressum Publisher Faculty for Civil Engineering and Geodetic Science Leibniz Universitt Hannover Dean of studies: Prof. Dr.-Ing. S. Schn Adress: Institut fr Erdmessung Schneiderberg 50, 30167 Hannover Telefone: +49 511 762-3362 Fax: +49 511 762-4006 E-Mail: schoen@ife.uni-hannover.de Student coordinator: Dipl.-Ing. Tanja Grnefeld Adress: c/o Geodtisches Institut Nienburger Str. 1, 30167 Hannover Telefon: +49 511 762-4408 Fax: +49 511 762-2468 E-Mail: info@gug.uni-hannover.de

  • Handbook 2015 Geodesy and Geoinformatics 3

    Content

    1. MASTER PROGRAMME 5

    1.1 Structure of the Master programme 5

    2. MODULE DESCRIPTION OF THE MASTER DEGREE PROGRAMME 10

    2.1 Compulsory modules in the Master programme 11

    2.2 Lectures for the elective module Geodesy 19

    2.3 Lectures for the elective module Geoinformatics 27

    2.4 Lectures for the elective module Studium Generale 35

    2.5 Additional study achievements in master programme 36

    3. ADRESSES AND CONTACT PERSONS 38

  • 4 Handbook 2015 Geodesy and Geoinformatics

    Register of modules and lectures BASIC SUBJECTS GEODESY

    Kinematic Measurement Processes in Engineering Geodesy 11 Methods and Applications of Physical Geodesy 12 Positioning und Navigation II 13

    BASIC SUBJECTS GEOINFORMATICS Photogrammetric Computer Vision 14 Internet GIS 15 Land Management and Real Estate Calculation II 16

    PROJEKT SEMINAR Project seminar 17

    MASTER THESIS Master thesis 18

    ELECTIVE MODULE GEODESY Analysis of deformation measurements 20 Industrial surveying 21 Selected topics of geodetic data analysis 22 Geodetic astronomy 23 Satellite Orbit Calculation 24 Research project: Analysis of the gravity field satellite data 25 Gravimetry II 26

    ELECTIVE MODULE GEOINFORMATICS Radar Remote Sensing 28 Image Analysis I 29 Image Analysis II 30 Selected Topics in Computer Vision 31 GIS III Applications and new research directions 32 Laser scanning modelling and interpretation 33 SLAM and path planning 34

    ADDITIONAL STUDY ACHIEVEMENTS Presentation seminar 36 Geodetic excursion 37

  • Handbook 2015 Geodesy and Geoinformatics 5

    1. Master programme 1.1 Structure of the Master programme The master degree programme consists of a compulsory and an elective field such as the elective module Studium Generale and the master thesis. The studies are based on compulsory modules with contents from six specialty fields of Geodesy and Geoinformatics. During the programme a project seminar is to be selected from topics offered by the institutes. A compulsory module is related to the project depending on the chosen topic. In the elective modules Geodesy and Geoinformatics students select single lectures in the sum of at least 27 credit points (CP). In each of both modules they have to select at least 9 CP. These options offer possibilities to specialise in a specific field as well as to keep a broad overview in all subjects. In order to gain interdisciplinary skills students will select lectures in the sum of 10 CP in the elective module Studium Generale. They can choose from the list in this handbook or select courses from the universitys complete lecture catalogue. The programme ends with a master thesis, which takes one semester and 30 CP. The thesis results are presented in a colloquium.

  • 6 H

    andbook 2015 G

    eodesy and G

    eoinform

    atics

    5 CP

    5 CP

    5 CP

    5 CP

    5 Cp

    Land Management and Real Estate

    Valuation II

    12 CP

    8 - 10 CP

    Compulsary Module tp Project Seminar

    30 CP

    10 CP

    Elective Module "Studium Generale"

    2 CP 1 CP

    Geodetic ExcursionPresenation Seminar

    1. Semester 2. Semester 3. Semester 4. Semester

    Geodesy

    9 - 18 CP

    Elective Module Geodesy Master Thesis

    5 CP

    Positioning and Navigation II

    Geoinformatics

    Project Seminar

    9 - 18 CP

    Elective Module Geoinformatics

    Kinematic Measurement Processes in

    Engineering Geodesy

    Photogrammetric Computer Vision

    Internet-GIS

    Methods and Applications of

    Physical Geodesy

    Figure 1: Curriculum for the Master programme

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    7

    Module

    Lecture Sem. L P S Type **Durat-

    ion (min.)

    presence prepara-tionexam prepara-

    tionwork load CP

    Basic course Geodesy

    Kinematic Measurement Processes in Engineering Geodesy 1 2 1 0 M 15 42 78 30 150 5Methods and Applications of Physical Geodesy 1 2 1 0 M 15 42 78 30 150 5Positioning and Navigation II 1 2 1 0 M 15 42 78 30 150 5

    Basic course Geoinformatics

    Photogrammetric Computer Vision 1 2 1 0 M 15 42 78 30 150 5Internet GIS 1 2 1 0 M 15 42 78 30 150 5Flchen- und Immobilienmanagement II 1 2 1 0 M 15 42 78 30 150 5

    Project seminar

    Project 2 0 0 4 56 84 40 180Project 3 0 0 4 Kolloquium 56 84 40 180 12

    Compulsary module to project seminar (examples)Lecture from elective modules 2 2 1 0 M 10 42 48 30 90Lecture from elective modules 2 2 1 0 M 10 42 48 30 90Lecture from elective modules 3 1 1 0 M 10 28 24 20 60 8*L: lecture, P: practical, S: seminar** S: written exam, M: oral exam

    Type * Examination Work load (hrs.)

  • 8 H

    andbook 2015 G

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    Module

    Lecture Sem. L P S Type **Durat-

    ion (min.)

    presence prepara-tionexam prepara-

    tionwork load CP

    Elective Module Geodesy 9-18

    Engineering Geodesy and Geodetic Data AnalysisAnalysis of deformation measurements 3 1 1 0 M 15 28 42 20 90 3Industrial surveying 2 1 1 0 M 15 28 42 20 90 3

    Selected topics of geodetic data analysis 2 2 1 0 M 15 42 78 30 150 5

    Physical GeodesyGeodetic Astronomy 3 1 1 0 M 15 28 42 20 90 3Satellite Orbit Calculation 2 1 1 0 M 15 28 42 20 90 3Research project: Analysis of the gravity field satellite data 2/3 0 0 3 42 78 0 120 4Gravimetry II 2 1 1 0 M 15 28 42 20 90 3

    Elective Module Geoinformatics 9-18

    Photogrammetry and Remote SensingRadar Remote Sensing 3 2 1 0 M 15 42 58 20 120 4Image Analysis I 2 2 1 0 M 15 42 58 20 120 4Image Analysis II 3 2 1 0 M 15 42 58 20 120 4Selected Topics in Computer Vision 3 1 1 0 M 15 28 42 20 90 3

    Geoinformatics and CartographyGIS III Applications and Research Directions 2 2 0 0 M 15 28 42 20 90 3Laser scanning modelling and interpretation 3 2 1 0 M 15 42 78 30 150 5SLAM and path planning 3 2 1 0 M 15 42 58 20 120 4

    Land ManagementLand Tenure and Land Policy 2 0 0 2 M 15 28 42 20 90 3

    Type Examination Work load (hrs.)

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    9

    Module

    Lecture Sem. L P S Type **Durat-

    ion (min.)

    presence prepara-tionexam prepara-

    tionwork load CP

    Elective module "Studium Generale" (examples)

    Elective lecture/module 2 depending on lectureElective lecture/module 2 depending on lectureElective lecture/module 3 depending on lectureElective lecture/module 3 depending on lecture 300 10

    Master thesis 4 M 30 900 30

    Additional study achievements

    Presentation seminar 2 0 0 2 15 45 0 60 2Geodetic excursion 3 0 0 0 30 0 0 30 1

    Sum MASTER programme 3600 120

    Type * Examination Work load (hrs.)

  • 10 Handbook 2015 Geodesy and Geoinformatics

    2. Module description of the Master degree programme

    Module Modulverantwortlicher Project seminar Depending on project Kinematic Measurement Processes in Engineering Geodesy Dr. Paffenholz Methods and Applications of Physical Geodesy Prof. Flury Positioning and Navigation II Prof. Schn Photogrammetric Computer Vision Prof. Heipke Internet GIS apl. Prof. Brenner Land Management and Real Estate Valuation II Prof. Vo Compulsary module to the project seminar Depending on project Elective module Geodesy Prof. Mller Elective module Geoinformatics Prof. Sester Elective module Studium Generale Dean of studies Master thesis Examinator Presentation seminar Dean of studies Geodetic Excursion Organising Institute

  • Handbook 2015 Geodesy and Geoinformatics 11

    2.1 Compulsory modules in the Master programme

    Kinematic Measurement Processes in Engineering Geodesy compulsory module for master programme

    Lectures Sem. Type/hrs ECTS Staff

    Kinematic Measurement Processes in Engineering Geodesy

    1 2V/1 5 Dr. Paffenholz / M. Sc. Zhang

    Module the lecture is associated to Basic course Geodesy 1

    Examination oral exam (15 minutes)

    Course work Accepted lab work

    Aim of the module The students shall broaden their methodical knowledge in the scope of engineering geodesy with the focus on kinematic measurement systems and tasks. As fundamentals for their further Master studies, the students shall advance their analysis skills as well as transferability skills. Lecture content Lecture: Overview of recent sensors and sensor systems in engineering geodesy; kinematic measuring systems and geodetic monitoring tasks (fundamentals: measurement configurations und evaluation methods); analysis of continous measurement data (stochastic processes, time series, covariance analysis, Fourier analysis, outline of filter theory), optimisation of measurement configurations . Lab work: Use of practical examples to learn and deepen the lecture contents: control of an automatic tacheometer, synchronisation of sensors with regard to thei