Identyfikatory
Warianty tytułu
Języki publikacji
Abstrakty
Purpose: The main purpose of this paper is to investigate the extent to which real-time monitoring of vehicles and the collection of operational data about them through telematic systems can contribute to the reduction of operating costs in a transport company. The study focuses on specific factors such as the driver's actions, which can affect the vehicle's technical condition and diesel consumption levels. Methodology: The research is based on an analysis of operational data obtained from the vehicles of a transport company engaged in international freight transportation. The data were primarily analyzed for an indicator related to total fuel (diesel) consumption while driving. Linear models were created using the least squares method, and the best-fitting models were selected to draw conclusions about the impact of telematic systems on the company's costs. Results: The study found that the introduction of a telematic system can have a positive impact on a transport company's operations and help reduce costs associated with the execution of transport orders. The analysis of the data showed that individual factors, such as driving time, average axle load, and average travel speed, can affect the total driving fuel consumption of all vehicles and contribute to the overall cost reduction. Theoretical contribution: This paper contributes to the understanding of the role of telematic systems in the optimization of fleet planning and management, which is a crucial aspect of the logistics of transporting goods. The research provides insights into the potential of real-time monitoring and data collection for improving the efficiency and cost-effectiveness of transport companies. Practical implications: The findings of this study can be useful for transport companies looking to improve their operations and reduce costs. The research highlights the importance of using telematic systems in the right way to carry out the transportation of goods and suggests that real-time monitoring and data analysis can be key to minimizing costs and maximizing profits.
Słowa kluczowe
Rocznik
Tom
Strony
6--18
Opis fizyczny
Bibliogr. 30 poz., fot., rys., tab.
Twórcy
autor
- Department of Transport, Stanisław Staszic State University of Applied Sciences in Piła, Podchorażych 10 Street, 64-920 Piła, Poland
autor
- Department of Transport, Stanisław Staszic State University of Applied Sciences in Piła, Podchorażych 10 Street, 64-920 Piła, Poland
Bibliografia
- ACET. (2019). Innovation in public transport on the example of the Szczecin agglomeration. Retrieved from: http://www.sitkszczecin.org.pl/images/dokumenty/materia%C5%82y/2017/2017%20-%20Innowacyjno%C5%9B%C4%87%20w%20transporcie%20publicznym%20na%20przyk%C5%82adzie%20aglomeracji%20szczeci%C5%84skiej.pdf
- Biniasz, D. (2016). Rozwiązania telematyczne w transporcie miejskim: studium przypadku [Telematics solutions in urban transport - case study]. Autobusy: technika, eksploatacja, systemy transportowe, 17.
- Daftrucks. (2023). DAF-TraXon-69637-PL. Retrieved 14.05.2023 from https://www.daftrucks.pl/-/media/files/document-library/infosheets/general/traxon/daf-traxon-69637-pl.pdf
- Farion, E., & Zbadyński, M. (2019). Analiza i ocena implementacji ecodrivingu w przedsiębiorstwie transportowym. Journal of TransLogistics, 5(1), 183-198.
- GDIK. (2019). Integrated traffic management system TRISTAR. Retrieved 14.05.2023 from https://gzdiz.gda.pl/aktualnosci/zintegrowany-system-zarzadzania-ruchem-tristar-podsumowanie-2022-roku,a,5980
- Getruck. (2023). Commercial offer. Retrieved 14.05.2023 from https://www.getruck.eu/
- Grupadbk. (2023). Low Deck Tractors. Retrieved 14.05.2023 from https://gielda.grupadbk.com/ciagniki-siodlowe-low-deck/
- Hawa. (2023). Business offer. Retrieved 14.05.2023 from https://www.hawa.pl/hurtowa-sprzedaz-paliw
- Hossain, E., Chow, G., Leung, V. C., McLeod, R. D., Mišić, J., Wong, V. W., & Yang, O. (2010). Vehicular telematics over heterogeneous wireless networks: A survey. Computer communications, 33(7), 775-793. https://doi.org/10.1016/j.comcom.2009.12.010
- InternetowyKantor. (2023). Euro exchange rate”. Retrieved 14.05.2023 from https://internetowykantor.pl/kurs-euro/
- Kierowcasieszkoli. (2023). ECO Driving - training for companies. Retrieved 13.06.2023 from https://kierowcasieszkoli.pl/eco-driving-szkolenie-dla-firm
- Litwin, M. (2003). The role of Intelligent Transportation System (ITS) National Architecture and Standards-the Canadian Experience. W: IV Konferencja Naukowo-Techniczna" Problemy komunikacyjne miast w warunkach zatłoczenia motoryzacyjnego". Poznań, Będlewo.
- Luksmann. (2023). Job offer. Retrieved 13.06.2023 from https://luksmann.pl/Articles/Details/183
- Magemarlog. (2023). Road transport - holiday issues. Retrieved 13.06.2023 from https://magemarlog.pl/transport-drogowy-problemy-zwiazane-z-wakacjami/
- Małecki, K., & Iwan, S. (2014). Application of telematics solutions as a factor conditioning effective management of urban freight transport. Logistics-Science, Logistics, 3, 4129.
- McCulloch, J. H. (1985). Miscellanea on Heteros* edasticity. Econometrica (pre-1986), 53(2), 483.
- Naukowiec. (2023). Least squares method - Description. Retrieved 13.06.2023 from https://www.naukowiec.org/
- Neumann, T. (2017, June). Automotive and telematics transportation systems. In 2017 International Siberian Conference on Control and Communications (SIBCON) (pp. 1-4). IEEE. https://doi.org/10.1109/SIBCON.2017.7998555
- Pasierbski, H. (2020). Telematyka w przedsiębiorstwie transportowym na przykładzie firmy Enterprise Logistics. Zeszyty Studenckie Wydziału Ekonomicznego „Nasze Studia”, (10), 203-210.
- Poradnikpracownika. (2023). Database administrator jobs and salaries. Retrieved 13.06.2023 from https://poradnikpracownika.pl/-praca-i-zarobki-administratora-baz-danych
- Pracuj. (2023). Salary calculator. Retrieved 13.06.2023 from https://zarobki.pracuj.pl/kalkulator-wynagrodzen/4740-brutto
- Quddus, M. A., Ochieng, W. Y., Zhao, L., & Noland, R. B. (2003). A general map matching algorithm for transport telematics applications. GPS solutions, 7, 157-167. https://doi.org/10.1007/s10291-003-0069-z
- Smart Cities and Communities - European Innovation Partnership, C(2012) 4701, European Commision.
- Svítek, M., Zelinka, T., Jirovský, V., & Jeřábek, M. (2012). Advanced approach to intelligent transport systems design. International Journal Of Systems Applications, Engineering & Development, 6(1), 179-187.
- Topolska, K., & Topolski, M. (2016). Rozwój przedsiębiorstw transportowo-spedycyjnych w warunkach międzynarodowych. Autobusy: technika, eksploatacja, systemy transportowe, 17, 739-745.
- Van Der Laan, J. D., Heino, A., & De Waard, D. (1997). A simple procedure for the assessment of acceptance of advanced transport telematics. Transportation Research Part C: Emerging Technologies, 5(1), 1-10. https://doi.org/10.1016/S0968-090X(96)00025-3
- Wikipedia. (2023). Test White. Retrieved 13.06.2023 from https://pl.wikipedia.org/wiki/Test_White’a
- Zelinka, T., Svitek, M., Votruba, Z., Jirovsky, V., & Novak, M. (2013). Transport Telematics-Systemic View. WSEAS, Athens.
- Zf. (2023). Business offer. Retrieved 13.06.2023 https://www.zf.com/products/pl/cv/fleet/fms_for_cargo/fms_for_cargo_transics.html
- Zhou, M., Jin, H., & Wang, W. (2016). A review of vehicle fuel consumption models to evaluate eco-driving and eco-routing. Transportation Research Part D: Transport and Environment, 49, 203-218. https://doi.org/10.1016/j.trd.2016.09.008
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-9af45492-6448-4601-922e-00b081f4dafd