Diploma in Surveying (complex of works on aero-Russian

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Diploma "Complex of geodetic works in the preparation of aeronautical information on the airways of the Russian Federation"

Protection took place in 2008. The diploma has 72 pages.

Content.
Introduction
1. International and national requirements for the quality of geodetic information on highway facilities.
1.1. Guide to the World Geodetic System WGS-84. Consequences of using non-concurrent reference systems in aviation.
1.2. Solution to the problem.
1.3. The list of aeronautical landmarks subject to geodetic surveying at aerodromes.
1.4. Global WGS-84 coordinate system. Definition, implementation, accuracy.
1.5. Guidelines for determining the coordinates of aeronautical landmarks and significant obstacles on aerodromes and airways.

2. The technology of obtaining geodetic information on the track objects.
2.1. The complex of works on shooting aeronautical landmarks using GPS equipment.
2.2.1. General provisions.
2.1.2. Overview of air navigation facilities.
2.1.3. Elevation systems
2.1.4. The choice of instruments for shooting. GPS receiver analysis.
2.1.5. Instruments for ground-based measurements.
2.1.6. Overview of the program for processing GPS data.
2.1.7. Principles of construction of the film basis.
2.1.8. Technology field work. Observation programs.
2.1.9. Measurement technology at strong points and aeronautical landmarks.
2.1.10.Technology measurements at points GHS.
2.1.11. Determination of magnetic declination.
2.2. Processing satellite measurements and obtaining results in the WGS-84 coordinate system.
2.2.1. Determination of the absolute values ​​of the coordinates of the control points in the WGS-84 system and the assessment of accuracy.
2.2.2. Determination of the coordinates and altitudes of aeronautical landmarks.
2.3. Transformation of coordinates and heights from the system WGS-84 to ПЗ-90.
2.3.1. Obtaining coordinates and heights in the system PZ-90.
2.3.2. Obtaining orthometric EGM-96 heights in the WGS-84 system.
2.3.3. Calculation of heights in the Baltic system.
    
3. Air Navigation in Central Siberia. Report on the work done.
3.1 General Information.
3.2. Manufacturing jobs.
3.2.1. Technical requirements.
3.2.2. Shooting methods. Determination of the coordinates of the ANO in the WGS-84 system.
3.2.3. Calculation of aeronavigation data in the coordinate system ПЗ-90.
3.2.4. Calculation of heights
3.2.5.Ortometric heights of the EGM-96.
3.2.6. The Baltic system of heights.
3.2.7. Determination of magnetic declination.
3.3. Results of work.
3.4. Data integrity control.
3.5. Measurement results. Catalog of coordinates in the system WGS-84 and ПЗ-90.
3.6. Dixon
3.6.1. Technical requirements.
3.6.2. Shooting and control methods.
3.6.3. Used hardware and software.
3.6.4. Definitions.
3.6.5.Results of work. Measurement log.
3.6.6. Determination of magnetic declination.
3.6.7. Catalog of coordinates DPRM “Dikson” in the WGS-84 coordinate system.
3.6.8. The catalog of coordinates DPRM “Dikson” in the coordinate system ПЗ-90.

4. The calculation of the estimated cost of production of geodetic works.
5. Life safety.
5.1. Organization of work in the Far North.
5.2. Work on objects with high microwave radiation.
Conclusion

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