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Politechnika Morska w Szczecinie

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Author Mąka, Marcin
Affiliation Maritime University of Szczecin, Faculty of Navigation, Institute of Marine Technologies, Wały Chrobrego 1-2, 70-500 Szczecin
E-mail m.maka@am.szczecin.pl
Author Majzner, Piotr
Affiliation Maritime University of Szczecin, Faculty of Navigation, Institute of Marine Technologies, Wały Chrobrego 1-2, 70-500 Szczecin
E-mail p.majzner@am.szczecin.pl
Author Lisaj, Andrzej
Affiliation Maritime University of Szczecin, Faculty of Navigation, Institute of Marine Technologies, Wały Chrobrego 1-2, 70-500 Szczecin
E-mail a.lisaj@am.szczecin.pl
ISSN printed 1733-8670
URI https://repository.am.szczecin.pl/handle/123456789/2402
Abstract This article presents the structure of a model of the allocation of radiocommunication events at coastal radio stations, land-based satellite stations and on vessels in sea area A3. The propagation of radio waves in the HF band has been analyzed to examine the range of various radio stations and their capabilities of establishing communication between each other. We also present methods of modeling and displaying the deployment of individual stations, of presenting radiocommunication events as a function of time using time diagrams, as well as the manner of the chronological presentation of radiocommunication events and related decisions. It has been shown that there is a relationship between the effectiveness of communication and propagation conditions that is strongly dependent on the time-of-day. We present the need to develop a decision support system for the radio operator on the bridge.
Pages 52-58
Publisher Scientific Journals Maritime University of Szczecin, Zeszyty Naukowe Akademia Morska w Szczecinie
Keywords GMDSS
Keywords radiocommunication
Keywords Radiocommunication Events Management System
Keywords allocation model
Title Radiocommunication event allocation model for a selected sea area
Type Original scientific article
References
  1. Czajkowski, J. (2002) System GMDSS regulaminy, procedury i obsługa. Gdańsk: Skryba.
  2. IAMSAR (2001) Międzynarodowy Lotniczy i Morski Poradnik Poszukiwania i Ratowania. Tom III. Środki mobilne. Gdynia: Wydawnictwo Trademar.
  3. Lisaj, A. & Majzner, P. (2014) A Model of Radiocommunication Events Management System. Scientific Journals of the Maritime University of Szczecin 38 (110), pp. 57–61.
  4. Lisaj, A., Majzner, P. & Mąka, M. (2015) Area Model in the Radio Communication Event Management System. Archives of Transport Systems Telematics 8 (3), pp. 30–34.
  5. Lisaj, A., Mąka, M. & Majzner, P. (2015) Radiocommunication event allocation model for sea area A2. Logistyka 4, pp. 7943–7951.
  6. Majzner, P. & Lisaj, A. (2014) The architecture of data transmission in inland navigation. 6th International Conference on Maritime Transport, Barcelona.
  7. Majzner, P. & Mąka, M. (2013) A Simulation model of Radiocommunication Events Management. Scientific Journals of the Maritime University of Szczecin 37 (109), pp. 61–65.
  8. Mąka, M., Lisaj, A. & Majzner, P. (2014) Model alokacji zdarzeń radiokomunikacyjnych w obszarze A1. Logistyka 4, pp. 802–810.
  9. Salmonowicz, W. (2001) Łączność w niebezpieczeństwie GMDSS. Szczecin.
  10. SOLAS (2009) Consolidated edition, International Maritime Organization.
  11. Uriasz, J. & Majzner, P. (2013) Systemy łączności morskiej. In: A. Pach, Z. Rau & Wągrowski M. (eds.) Nowoczesne systemy łączności i transmisji danych na rzecz bezpieczeństwa. Szanse i zagrożenia. Warszawa: LEX a Wolter Kluwert Bussines.
ISSN on-line 2392-0378
Language English
Funding No data
Figures 6
Tables 0
DOI 10.17402/216
Published 2017-07-06
Accepted 2017-05-11
Recieved 2017-04-04


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