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DMI measurements impact on a position estimation with lack of GNSS signals during Mobile Mapping

Abstract

Nowadays, Mobile Laser Scanning is common in use in addition to geodesy measurements. The data which are provided by the system characterizes with high precision and flexibility. To precise mapping, the accuracy of the data should be maintained. In Poland, according to the minister’s dispositions, the accuracy of the data should not exceeded 10 cm. With fully operated system it is easy to uphold, but there is a situation when a signal from an INS is not enough to preserve it. This paper is presenting the solution of a DMI use in Mobile Laser Scanning measurements as the support for position estimation during lack of satellites signal situation when the vehicle with the platform was entered the tunnel. To comparison the results a several of entrances was performed. This research helps understand the use of DMI in mobile data acquisition in different acquiring situations.

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Category:
Conference activity
Type:
materiały konferencyjne indeksowane w Web of Science
Published in:
Journal of Physics : Conference Series no. 870, pages 1 - 7,
ISSN: 1742-6588
Title of issue:
2nd International Conference on Measurement Instrumentation and Electronics strony 1 - 7
ISSN:
1742-6596
Language:
English
Publication year:
2017
Bibliographic description:
Bobkowska K., Nykiel G., Tysiąc P..: DMI measurements impact on a position estimation with lack of GNSS signals during Mobile Mapping, W: 2nd International Conference on Measurement Instrumentation and Electronics, 2017, ,.
DOI:
Digital Object Identifier (open in new tab) 10.1088/1742-6596/870/1/012010
Bibliography: test
  1. Ogle J, Guensler R, Bachman W, Koustak M, and Wolf J 2002 Accuracy of global positioning system for determining driver performance parameters Transp. Res. Rec. J. Transp. Res. Board 1818 pp. 12-24. open in new tab
  2. Jing H, Slatcher N, Meng X and Hunter G 2016 Monitoring capabilities of a mobile mapping system based on navigation qualities Int. Arch. Photogramm. Remote Sens. Spat. Inf. Sci., 12- 19 July 2016, Prague, Czech Republic open in new tab
  3. Nowak A 2016 Dynamic GNSS Mission Planning Using DTM for Precise Navigation of Autonomous Vehicles J. Navig. open in new tab
  4. Nowak A 2015 The Proposal to 'Snapshot' RAIM method for GNSS vessel receivers working in poor space segment geometry Polish Marit. Res. 22 no. 4(88), pp. 3-8 open in new tab
  5. Fekete S, Diederichs M, and Lato M 2010 Geotechnical and operational applications for 3- 6 open in new tab
  6. 2nd International Conference on Measurement Instrumentation and Electronics IOP Publishing IOP Conf. Series: Journal of Physics: Conf. Series 870 (2017) 012010 doi :10.1088/1742-6596/870/1/012010 open in new tab
  7. dimensional laser scanning in drill and blast tunnels Tunn. Undergr. Sp. Technol., 25 no. 5, pp. 614-628 open in new tab
  8. Yoon J S, Sagong M, Lee J S and Lee K S 2009 Feature extraction of a concrete tunnel liner from 3D laser scanning data NDT E Int. 42 no. 2 pp. 97-105 open in new tab
  9. Janowski A Nagrodzka-Godycka K Szulwic J and Ziolkowski P 2016 Remote sensing and photogrammetry techniques in diagnostics of concrete structures Comput. Concr. pp. 335-342,
  10. Janowski A, Jurkowska A, Przyborski M, Sobieraj A, Szulwic J, Wróblewska D and Wieczorek B 2014 Improving the quality of education through the implementation of the diplomas and group projects during engineering studies in cooperation with employers EDULEARN14 Proceedings (2014) pp. 1837-1843.
  11. Nagrodzka-Godycka K Szulwic J and Ziółkowski P 2015 Method of selective fading as a educational tool to study the behaviour of prestressed concrete elements under excess loading 8th International Conference of Education, Research and Innovation, ICERI2015 Proceedings, 2015 no. ISBN: 978-84-608-2657-6 pp. 472-479.
  12. Nagrodzka-Godycka K, Szulwic J and Ziółkowski P 2016 Accuracy improvement of the prestressed concrete structures precise geometry assessment by use of bubble micro-sampling algorithm 16th International Multidisciplinary Scientific GeoConference SGEM 2016 DOI: 10.5593/SGEM2016/B22/S10.102 pp. 799-806, open in new tab
  13. Chen C, Liu H, Liu Y and Zhuo X 2013 High accuracy calibration for vehicle-based laser scanning and urban panoramic imaging and surveying system Proc. SPIE 8917, MIPPR 2013 Multispectral Image Acquis. Process. Anal. 89170Y doi:10.1117/12.2031466 open in new tab
  14. Burdziakowski P, Janowski A, Kholodkov A, Matysik K, Matysik M, Przyborski M, Szulwic J, Tysiac P and Wojtowicz A 2015 Maritime laser scanning as the source for spatial data Polish Marit. Res. 22 no. 4 pp. 9-14, 2015.
  15. Shi B, Lu X, Yang F, Zhang C, Lv Y and Min C 2017 Shipborne Over-and Under-Water Integrated Mobile Mapping System and Its Seamless Integration of Point Clouds Mar. Geod., pp. 1-19 open in new tab
  16. Guan H, Li J, Yu Y, and Liu Y 2016 Geometric validation of a mobile laser scanning system for urban applications 2015 ISPRS International Conference on Computer Vision in Remote Sensing. International Society for Optics and Photonics pp. 990108-990108. open in new tab
  17. Kwoczynska B, Sagan W and Dziura K 2016 Elaboration and Modeling of the Railway Infrastructure Using Data from Airborne and Mobile Laser Scanning 2016 Baltic Geodetic Congress (BGC Geomatics) pp. 106-115. open in new tab
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