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The Application of Kalman Filtering to Predict Vertical Rail Axis Displacements of the Overhead Crane Being a Component of Seaport Transport Structure Cover

The Application of Kalman Filtering to Predict Vertical Rail Axis Displacements of the Overhead Crane Being a Component of Seaport Transport Structure

Open Access
|Jun 2016

References

  1. 1. Anigacz W., Modification of geodetic design methods for overhead crane runway rectification, (in Polish), Opole University of Technology, Studies and Monographs, z.57, Opole, 1992
  2. 2. Banachowicz A., Structure of Kalman Filter at an algorithm of Integrated Navigation System, Proceedings of 2nd Symposium on “Integrated Navigation”, Maritime University of Szczecin, 2000.
  3. 3. Baran L. W., Theoretical principles of processing of geodetic measurement results (in Polish), Wydawnictwo Naukowe PWN, Warsaw, 1999
  4. 4. Borkowski P., Data fusion in a navigational decision support system on a sea-going vessel, Polish Maritime Research, No 4(76), Vol. 19, pp. 78-87, 2012, DOI 10.2478/v10012-012-0043-110.2478/v10012-012-0043-1
  5. 5. Borkowski P., Magaj J., Mąka M, Positioning based on multi-sensor Kalman filter (in Polish), Scientific Journals of the Maritime University of Szczecin, 13,(85), pp 5-9, 2008.
  6. 6. Filipiak D., Kamiński W., Determination of rectification corrections for semi gantry crane rail axes in the local 3D coordinate system, Reports on Geodesy and Geoinformatics, vol. 97/2014, 71-79, DOI: 10.2478/rgg-2014-0012, 201410.2478/rgg-2014-0012
  7. 7. Gocał J., Engineering and industrial geodesy. Part III (in Polish), Wydawnictwo AGH, Krakow, 2010
  8. 8. Grala M., & Kopiejewski G., Engineering Geodesy. Selected divisions. (in Polish), Wyd. UWM, Olsztyn, 2003
  9. 9. Gulal E., Structural deformations analysis by means of Kalman-filtering., Boletim De Ciencias Geodesicas, Volume: 19 Issue: 1 Pages: 98-113 Published: JAN-MAR, 2013, DOI 10.1590/S1982-2170201300010000710.1590/S1982-21702013000100007
  10. 10. Kalman, R.E., A new approach to linear filtering and prediction problems. Transactions of the ASME-Journal of Basic Engineering, 82 (D): 35-45, 1960, DOI 10.1115/1.366255210.1115/1.3662552
  11. 11. Kamiński W., New method for determination of adjustment corrections for crane rail axes, Reports on Geodesy vol. 94/2013, 47-55, DOI: 10.2478/rgg-2013-0006, 201310.2478/rgg-2013-0006
  12. 12. Křemen T., Koska B., Pospíšil J., Kyrinovič P., Haličková J., & Kopáčik A., Checking of crane rails by terrestrial laser scanning technology, 13th FIG, 4th IAG, Lnec, Lisbon 12-15 May, 2008
  13. 13. Kyrinovič P., & Kopáčik A., Automated measurement system for crane rail geometry determination, 27th International Symposium on Automation and Robotics in Construction (ISARC 2010), 294 – 305, 201010.22260/ISARC2010/0032
  14. 14. Marjetič A., Kregar K., Ambrožič T., & Kogoj D., An Alternative Approach to Control Measurements of Crane Rails, Sensors, 12, 5906-5918, 2012, DOI 10.3390/s12050590610.3390/s120505906338672022778621
  15. 15. Naus K., The effect of measurements burdened with gross error on the accuracy of ship position estimation with the aid of extended Kalman filter and robust geodesic adjustment (in Polish), Logistyka, 3/2014, 4589-4602, 2014
  16. 16. Shi. C., Zhao D., Peng J., Shen C., Identification of ship maneuvering model Using extender Kalman filters, TransNav, International Journal on Marine Navigation and Safety of Sea Transportation, Vol.3, No. 1, March 2009, DOI 10.1201/9780203869345.ch59
  17. 17. Stateczny A., Kazimierski W., A Concept of Decentralized Fusion of Maritime Radar Targets with Multisensor Kalman Filter, IEEE, Proceedings of IEEE 11-th International Radar Symposium, 16-18 June 2010, pp.1-4
  18. 18. Tomera M., Dynamic positioning system for a ship on harbour manoeuvring with different observers. experimental results. Polish Maritime Research Volume: 21 Issue: 3 Pages: 13-24 Published: SEP 201410.2478/pomr-2014-0025
  19. 19. Wiśniewski Z., Compensatory calculation in geodesy (with examples) (in Polish), Wydawnictwo UWM, Olsztyn, 2005
  20. 20. Wiśniewski Z., Advanced methods of geodetic observation processing with examples (in Polish), Wydawnictwo UWM w Olsztynie, Olsztyn, 2013.
DOI: https://doi.org/10.1515/pomr-2016-0022 | Journal eISSN: 2083-7429 | Journal ISSN: 1233-2585
Language: English
Page range: 64 - 70
Published on: Jun 30, 2016
Published by: Gdansk University of Technology
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2016 Daria Filipiak – Kowszyk, Waldemar Kamiński, published by Gdansk University of Technology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.