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CZECH TECHNICAL UNIVERSITY IN PRAGUE
STUDY PLANS
2019/2020

Navigation

The course is not on the list Without time-table
Code Completion Credits Range Language
2221195 Z,ZK 4 2P+2C Czech
Lecturer:
Tutor:
Supervisor:
Department of Aerospace Engineering
Synopsis:

Positioning and navigation of aircraft using comparative and instrument navigation. Aircraft radio navigation systems, particularly satellite. Interpretation respects the regulations of ICAO recommendations of the European Radio Navigation Plan and the Federal Radionavigation Plan USA. Students will acquaint with using the system for piloting.

Requirements:

No requirements.

Syllabus of lectures:

1) The Globe, reference area, coordinates of a point on the Earth, system WGS 84

2) Aviation Maps, projections and types of maps. Air navigation comparative and instrumentation. Radio navigation.

3) Satellite radio navigation systems, Doppler and telemetric systems, positioning and accuracy, DOP.

4) Satellite navigation system GPS, signal structure, services SPS and PPS.

5) Satellite navigation system Galileo and his services.

6), Satellite navigation systems GLONASS and COMPASS and regional systems.

7) Limitations of deficiencies satellite navigation, GBAS (DGPS) and SBAS (EGNOS, WAAS), RAIM, AAIM

8) Other applications of satellite systems, particularly for spacecraft navigation in the vicinity of Earth

9) Classic (earthly) radio navigation systems. radio director finder, automatic radio compass.

10) The angle measuring systems, VOR. The principles, indications. Beacon DVOR, VOT. TACAN.

11) Measurement of distance. The system DME. Space navigation. The radio altimeter.

12) Systems approach and landing: ILS and its subsystems. MLS. Prospects for satellite systems GLS.

13) Systems hyperbolic, resist eLORAN as a backup satellite navigation

Syllabus of tutorials:

1) The Globe, reference area, coordinates of a point on the Earth, system WGS 84

2) Aviation Maps, projections and types of maps. Air navigation comparative and instrumentation. Radio navigation.

3) Satellite radio navigation systems, Doppler and telemetric systems, positioning and accuracy, DOP.

4) Satellite navigation system GPS, signal structure, services SPS and PPS.

5) Satellite navigation system Galileo and his services.

6), Satellite navigation systems GLONASS and COMPASS and regional systems.

7) Limitations of deficiencies satellite navigation, GBAS (DGPS) and SBAS (EGNOS, WAAS), RAIM, AAIM

8) Other applications of satellite systems, particularly for spacecraft navigation in the vicinity of Earth

9) Classic (earthly) radio navigation systems. radio director finder, automatic radio compass.

10) The angle measuring systems, VOR. The principles, indications. Beacon DVOR, VOT. TACAN.

11) Measurement of distance. The system DME. Space navigation. The radio altimeter.

12) Systems approach and landing: ILS and its subsystems. MLS. Prospects for satellite systems GLS.

13) Systems hyperbolic, resist eLORAN as a backup satellite navigation

Study Objective:

To provide survey of types of comparative and instrument navigation, the principles and ways of using.

Study materials:

?Misra, P.; Enge, Per.: Global positioining system. Lincoln, Ganga-Jamuna Press, 2010

?Parkinson, B.W.; Spilker, J.J.: Global Positioning System: Theory and Applications, Vol.I., AIAA, Washington, 1996

?Parkinson, B.W.; Spilker, J.J.: Global Positioning System: Theory and Applications, Vol.II., AIAA, Washington, 1996.

Note:
Further information:
No time-table has been prepared for this course
The course is a part of the following study plans:
Data valid to 2020-08-09
For updated information see http://bilakniha.cvut.cz/en/predmet2991506.html