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Contribution of Navigation Technologies to Mobile Gravimeter Development

https://doi.org/10.17285/0869-7035.0018

Abstract

The paper presents the basic steps of developing gravimeters for measuring gravity from the mobile vehicle board; the gravimeters are designed by CSRI Elektropribor. Technical solutions are described, which allowed high accuracy of measurements to be achieved. The authors discuss the topical spheres of mobile gravimeter application.

About the Authors

V. G. Peshekhonov
Concern CSRI Elektropribor, JSC, St. Petersburg
Russian Federation


A. V. Sokolov
Concern CSRI Elektropribor, JSC, St. Petersburg
Russian Federation


L. K. Zheleznyak
Schmidt Institute of Physics of the Earth (Russian Academy of Sciences), Moscow
Russian Federation


A. D. Bereza
Concern CSRI Elektropribor, JSC; ITMO University, St. Petersburg
Russian Federation


A. A. Krasnov
Concern CSRI Elektropribor, JSC; ITMO University, St. Petersburg
Russian Federation


References

1. Veselov, K.E., Static Approach to Gravity Measurement at Sea Using Rotation-Type Elastic System, Prikladnaya geofizika, 1956, no. 15.

2. Popov, E.I., Quartz Gravity Meter for Marine Observations, Proceedings of Institute of Physics of the Earth of the USSR Academy of Sciences, 1959, no. 8.

3. Popov, E.I., Opredelenie sily tyazhesti na podvizhnom osnovanii s pomoschiyu silno dempfirovannykh gravimetrov (Determination of the Earth Gravity on a Moving Base Using Heavily Damped Gravimeters), Moscow: Nauka, 1967.

4. Rivkin, S.S., Bereza, A.D., Giroskopicheskaya stabilizatsiya morskikh gravimetrov (Gyroscopic Stabilization of Marine Gravity Meters), Moscow: Nauka, 1985, p. 176.

5. Zheleznyak, L.K., Izmailov, Yu.P., Markov, G.S., and Popov, E.I., Opyt provedeniya ploschadnykh s’yomok morskimi gravimetrami (Experience of Areal Survey by Marine Gravity Meters), Moscow: Nauka, 1976.

6. Popov, E.I., Zheleznyak, L.K., Bereza, A.D., and Elinson, L.S., Principles of Designing a Marine Automated Gravimeter, Metrologiya v gravimetrii (Metrology in Gravimetry), Abstracts of the First Scientific and Technical Conference, Kharkov, KHGNIIM, 1980, pp. 88-90.

7. Zheleznyak, L.K., Popov, E.I., USG-type Elastic System, Pribory i metody obrabotki graviinertsialnykh izmerenii (Devices and Methods of Gravity-Inertial Measurement Processing), Moscow, Institute of Physics of the Earth of the USSR Academy of Sciences, 1984.

8. Zheleznyak, L.K., Elinson, L.S., Specific Features of Standardizing a Gravimeter with Two Elastic Torsion Systems by Means of Tilting, Fiziko-tekhnicheskaya gravimetriya (Physico-Technical Gravimetry), Moscow: Institute of Physics of the Earth of the USSR Academy of Sciences, 1982.

9. Antonov, V.I., Bronshtein, I.G., Livshits, E.M., and Elinson, L.S., Studying Errors of Optical-Electronic Converter for Automated Marine Gravimeter, Metrologiya v gravimetrii (Metrology in Gravimetry), Abstracts of the Second Scientific and Technical Conference, Kharkov, KHGNIIM, 1984, pp. 86-87.

10. Zheleznyak, L.K., Popov, E.I., Design Principles and Optimal Scheme of Modern Marine Gravimeter, Fiziko-tekhnicheskaya gravimetriya (Physico-Technical Gravimetry), Moscow, Institute of Physics of the Earth of the USSR Academy of Sciences, 1982.

11. Bereza, A.D., Kostrov, A.V., and Rivkin, S.S., Studying the Filtering Methods in Gravity Measurements, Fiziko-tekhnicheskaya gravimetriya (Physico-Technical Gravimetry), Moscow, Nauka, 1982, pp. 61–88.

12. Zheleznyak, L.K., Areal Mapping in Ocean by Various-Type Gravimeters, Fizika Zemli, 1992, no. 3, pp. 50–55.

13. In Memory of Professor L.P. Nesenyuk. Selected works and memoirs, Saint Petersburg, SRC RF

14. Concern CSRI Elektropribor, JSC, 2010.

15. Rzhevskii, N.N., Sokolov, A.V., Usov, S.V., and Elinson, L.S., Experience in Using Chekan-A Gravimetric System for Offshore Seismic Acquisition Abroad, Geofizicheskii vestnik, 1999, no. 12, pp. 8–11.

16. Sokolov, A.V., Usov, S.V., and Elinson, L.S., Experience in Gravity Survey in Conditions of Marine Seismic Operations, Primenenie graviinertsial’nykh tekhnologii v geofizike, Saint Petersburg, 2002, pp. 21–32.

17. Berzhitskii, V.N., Ilyin, V.N., Saveliev, E.B., Smoller, Yu.L., Yurist, S.S., Bolotin, Yu.V., Golovan, A.A., Parusnikov, N.A., Popov, G.V., and Chichinadze, M.V., Inertial-Gravimetry System.

18. Development Experience and Flight Test Results, Primenenie graviinertsial’nykh tekhnologii v geofizike, Saint Petersburg, 2002, pp. 48–60.

19. Smoller, Yu.L., Yurist, S.S., Fedorova, I.P., Bolotin, Yu.V., Golovan, A.A., Koneshov, V.N., Hewison, W., Richter, T., Greenbaum, J., Young, D., Blankenship, D., Using Airborne Gravimeter GT2A in Polar Areas, Proceedings of IAG Symposium on Terrestrial Gravimetry: Static and Mobile Measurements, 2014, pp. 36–40.

20. Blazhnov, B.A., Nesenyuk, L.P., Peshekhonov, V.G., Sokolov, A.V., Elinson, L.S., and Zheleznyak, L.K., Integrated Mobile Gravimetry System. Development and Test Results, Primenenie graviinertsial’nykh tekhnologii v geofizike, Saint Petersburg, 2002, pp. 33–44.

21. Blazhnov, B.A., Nesenyuk, L.P., and Elinson, L.S., Peculiarities of Generating Parameters of Vehicle Vertical Motion by Data from Strongly Damped Gravity Meter, Giroskopiya i navigatsiya, 1996, no. 4.

22. Krasnov, A.A., Sokolov, A.V., Development and Introduction of Aerogravity Measurement Processing Technique, Navigation and Motion Control. Proceedings of the 10th Anniversary Conference of Young Scientists, Ed.: Peshekhonov, V.G., 2008, pp. 193–198.

23. Krasnov, A.A., Teplyashin, A.A., Studying Errors of Airborne Gravimeter Gyrostabilizer, Navigation and Motion Control. Proceedings of the 10th Anniversary Conference of Young Scientists, Ed.: Peshekhonov, V.G., 2006, pp. 42–47.

24. Krasnov, A.A., Nesenyuk, L.P., Sokolov, A.V., Stelkens-Kobsch, T.H., and Heyen, R., Test results of the airborne gravimeter, Proceedings of the International Symposium on Terrestrial Gravimetry: Static and Mobile Measurements (TG-SMM2007), 2008, pp. 73–77.

25. Evstifeev, M.I., Krasnov, A.A., Sokolov, A.V., Staroseltseva I.M., Elinson, L.S., Zheleznyak, L.K., and Koneshov, V.N., New-Generation Gravimetric Sensor, Izmeritel’naya tekhnika, 2014, no. 9, pp. 12–15.

26. Krasnov, A.A., Sokolov, A.V., The Up-to-Date Mathematical Software Set for Mobile Gravimeter Chekan-AM, Giroskopiya i navigatsiya, 2015, no. 2 (89), pp. 118–131.

27. Peshekhonov, V.G., Sokolov, A.V., Elinson, L.S., and Krasnov, A.A., A New Air-Sea Gravimeter: Development and Test Results, Proceedings of the 22nd Saint Petersburg International Conference on Integrated Navigation Systems, 2015, pp. 173–179.

28. Kazanin, G.S., Ivanov, G.I., Kazanin, A.S., Vasiliev, A.S., and Makarov, E.S., Expedition “Arctic-2014”: Integrated Geophysical Exploration Near the North Pole, Scientific and Technical Digest “Vesti gazovoi nauki”, 2015, no. 2, pp. 95–97.

29. Koneshov, V.N., Modern Methods of Marine and Airborne Gravimetry, Developed in Partnership with the Institute of Physics of the Earth of RAS, Zemlya i vselennaya, 2018, no. 6, pp. 13–20.

30. Atakov, A.I., Lokshin, B.S., Prudnikov, A.N., and Shkatov, M.Yu., Results of Integrated Geophysical Survey on the Ushakovsko-Novozemel’skaya Prospective Area in the Kara Sea, Proceedings of IAG Symposium on Terrestrial Gravimetry: Static and Mobile Measurements, 2010, pp. 33–35.

31. Lygin, V.A., Gravity Surveys in Transition Zones with the Use of Hovercraft, Proceedings of IAG International Symposium on Terrestrial Gravimetry: Static and Mobile Measurements (TG-SMM2010), 2011, pp. 47–49.

32. Sokolov, A.V., Krasnov, A.A., and Zheleznyak, L.K., Improving the Accuracy of Marine Gravimeters, Giroskopiya i navigatsiya, 2019, vol. 27, no. 2 (105), pp. 70–81.

33. Koshaev, D.A., Motorin, A.V., and Stepanov, O.A., Performance Analysis of the Use of Satellite Measurements in Marine Gravimetry, Proceedings of the 26th Saint Petersburg International Conference on Integrated Navigation Systems, 2019, pp. 282–287.

34. Modern Methods and Means of Measuring the Parameters of the Earth Gravity Field / Ed. Peshekhonov, V.G., Stepanov, O.A., Saint Petersburg, Concern CSRI Elektropribor, JSC, 2017, p. 390.

35. Krasnov, A.A., Sokolov, A.V., Usov, S.V., The results of regional airborne gravimetric surveys with a Chekan-AM gravimeter in the Arctic, Proceedings of IAG International Symposium on Terrestrial Gravimetry: Static and Mobile Measurements (TG-SMM2010), 2011, pp. 27–32.

36. Forsberg, R., Olesen, A., Ferraccioli, F., Jordan, T., Matsuoka, K., ZakrajsekA., Ghidella, M., Greenbaum, J., Exploring the Recovery Lakes region and interior Dronning Maud Land, East Antarctica, with airborne gravity, magnetic and radar measurements, Geological Society, London, Special Publications, 20 September 2017, 461, 23–34.

37. Forsberg, R., Olesen, A., Einarsson, I., Manandhar, N., Shreshta, K., Geoid of Nepal from Airborne Gravity Survey, Earth on the Edge: Science for a Sustainable Planet. International Association of Geodesy Symposia, Springer, Berlin, Heidelberg, 2014, vol. 139.

38. Barthelmes, F.,S. Petrovic, H., Pflug First Experiences with the GFZ New Mobile Gravimeter ChekanAM, Proceedings of IAG Symposium on Terrestrial Gravimetry: Static and Mobile Measurements, 2013, pp. 18–19.

39. Barzaghi, R., Albertella, A., Carrion, D., Barthelmes, F., Petrovic, S., Scheinert, M., Testing Airborne Gravity Data in the Large-Scale Area of Italy and Adjacent Seas., IGFS 2014. International Association of Geodesy Symposia, 2015, vol. 144.

40. Lu, B., Barthelmes, F., Petrovic, S., Forste, C., Flechtner, F., Luo, Z., He, K., Li, M., Airborne gravimetry of GEOHALO mission: data processing and gravity field modeling, Journal of Geophysical Research: Solid Earth Solid Earth, 2017, 122, 10, 586–10, 604.

41. Maleev, P.I., Kapustin, I.V., Navigation Aids for Foreign Strategic Submarines, Proceedings of the 6th Scientific and Technical Conference “State-of-the-Art and Problems of Navigation and Oceanography NO-2007”, Saint Petersburg: ГНИНГИ (GNINGI), 2007, pp. 132–139.

42. Sokolov, A.V., Stepanov, O.A., Toropov, A.B., and Nosov, A.S., Solving the Problem of Navigation Sighting of Marine Vehicles by Gravity Field, Navigatsiya po gravitatsionnomu polyu Zemli i ee metrologicheskoe obespechenie (Navigation in the Earth Gravity Field and its Metrological Support). Abstracts of Papers of Scientific and Technical Conference, 2017, pp. 12–14.

43. Zheleznyak, L.K., Markov, G.S. and Romanishin, P.A., Experimental production gravimetriс survey in the Black Sea, in Graviinertsial’nye issledovaniya (Graviinertial Studies), Moscow: IFZ Akad. Nauk SSSR, 1983, pp. 35–42.


Review

For citations:


Peshekhonov V.G., Sokolov A.V., Zheleznyak L.K., Bereza A.D., Krasnov A.A. Contribution of Navigation Technologies to Mobile Gravimeter Development. Giroskopiya i Navigatsiya. 2019;27(4):162-180. (In Russ.) https://doi.org/10.17285/0869-7035.0018

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ISSN 0869-7035 (Print)
ISSN 2075-0927 (Online)