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Logistics engineering and industry 4.0 and digital factory

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Języki publikacji
EN
Abstrakty
EN
The number of IT systems and technologies supporting various processes, including the manufacturing, has been growing in recent years. Various versions of integrated ERP-class systems are known. At the same time, we are in the fourth industrial revolution. The future is Industry 4.0 and Digital Factory. Industry 4.0 is an overall term for technical innovations and value change organization concepts which revolutionize the industrial production. Currently, the digital technologies change the way production is carried out by generating, transferring and processing of data, and also by analysing large amounts of datasets. There is a problem of the place and significance of logistics, transport and supply chains in the fourth industrial revolution. What is logistics engineering, what methods are suggested to solve the contemporary problems of logistic support of production processes? To whom are the virtual systems dedicated? What rules should be applied by small and medium enterprises (SME)? Is the pressure of virtual world a threat to such companies? Is it possible to design and make real products without virtual manufacturing? Hence, does Logistics 4.0 exist and where is it used? The practice of logistics engineering is applied during the entire system lifecycle by means of interactive processes supporting the analyses and research (compromise) for optimization of costs, logistics and efficiency. Surely, it can be said that without the correctly designed and effective logistic processes the contemporary production system could not achieve the required productivity and effectiveness. The article describes the basic tasks of logistics engineering in relation to production companies, as well as relations with Industry 4.0. and digital factory. Moreover, a proposal of the author’s own algorithms for use in the quest to improve the continuity of flow and of enterprise effectiveness for SME class companies was presented.
Rocznik
Strony
59--72
Opis fizyczny
Bibliogr. 27 poz., rys., tab., wykr.
Twórcy
  • AGH - University of Science and Technology, Faculty of Mechanical Engineering and Robotics, Poland
Bibliografia
  • [1] BAUERNHANSEL, T., HOMPEL, T., VOGEL-HEUSER, B., 2014. Industrie 4.0 in Produktion, Automatisierung und Logistik. Wiesbaden: Springer Fachmedien.
  • [2] BIFFL, S., LÜDER, A., GERHARD, D., 2017. Multi–Disciplinary Engineering for Cyber–Physical Production Systems. Cham: Springer International Publishing AG.
  • [3] BUKOWSKI, L., A., 2016. Zapewnienie ciągłości dostaw w zmiennym i niepewnym otoczeniu. Dąbrowa Górnicza: Wydawnictwo Naukowe Wyższa Szkoła Biznesu.
  • [4] DOLGUI, A., PROTH, J.-M., 2010. Supply chain engineering. Berlin Heidelberg: Springer–Verlag.
  • [5] GOŁDA-JACYNA, I., 2016. Wspomaganie decyzji w łańcuchach dostaw w aspekcie oceny efektywności realizacji zadań. Poznań: Wydawnictwo Politechniki Poznańskiej.
  • [6] GOŁDA-JACYNA, I., IZDEBSKI, M., SZCZEPAŃSKI, E., GOŁDA, P., 2018. The assessment of supply chain effectiveness. Archives of Transport, 45(1), 43-52.
  • [7] GRACEL, J., STOCH, M., BIEGAŃSKA, A., 2017. Inżynierowie Przemysłu 4.0. Kraków: ASTOR Publishing.
  • [8] GUDEHUS, T., KOTZAB, H., 2009. Comprehensive Logistics. Berlin Heidelberg: Springer–Verlag.
  • [9] JACYNA, M., LEWCZUK, K., 2016. Projektowanie systemów logistycznych. Warszawa: PWN.
  • [10] JACYNA, M., KŁODAWSKI, M., WASIAK, M., ŻAK, J., 2019. Planning the development of sustainable transport system with simulation tools. Warszawa: Oficyna Wydawnicza Politechniki Warszawskiej.
  • [11] KUEHN, W., 2006(a). Digitale Fabrik, Simulation für Produktionsplaner. München: Hanser Verlag.
  • [12] KUEHN, W., 2006(b). Digital Factory – Integration of simulation enhancing the product and production process towards operative control and optimization. I. J. of Simulation, 7 (7), 27-39.
  • [13] KUEHN, W., 2018. Digital twins for decision making in complex production and logistic enterprises. Int. J. of Design and Nature and Ecodynamics, 13(3), 260–271.
  • [14] MICHLOWICZ, E., 2013. Logistics in production processes. Journal of Machine Engineering, 13(4), 5-17.
  • [15] MICHLOWICZ, E., 2017. Metody inżynierii logistyki w dystrybucji wyrobów. [in:] Logistyka: nauka - badania - rozwój / pod red. Macieja Mindura. Radom: Wydawnictwo Naukowe Instytutu Technologii Eksploatacji - PIB, pp. 269–294.
  • [16] MICHLOWICZ, E., MINDUR, L., 2018. Logistics engineering in logistic processes designing. Logistics and Transport, 2(38), 53-62.
  • [17] MYCHLEWICZ, C., PIĄTEK, Z., 2017. Od Industry 4.0 do Smart Factory. Warszawa: Siemens–Omega communication.
  • [18] NYHUIS, P., WIENDHAL, H-P., 2009. Fundamentals of production logistics. Theory, tools and applications. Berlin Heidelberg: Springer–Verlag.
  • [19] PINTO, J.L.Q. et al., 2018. Just in Time factory. Implementation through lean manufacturing tools. Cham: Springer International Publishing AG.
  • [20] ROTHER, M., HARRIS, R., 2007. Creating Continuous Flow. Wrocław: Lean Enterprise Institute Poland.
  • [21] RÜTTIMANN, B.G., 2018. Lean Compendium. Introduction to Modern Manufacturing Theory. Cham: Springer International Publishing AG.
  • [22] SCHWAB, K., 2016. The Fourth Industrial Revolution. Cologny/Geneva: World Economic Forum.
  • [23] TAYLOR, G.D., 2009. Logistic engineering handbook. Boca Raton: CRC Press Taylor and Francis Group.
  • [24] WOMACK, J.P., JONES, D.T., 2008. Lean thinking – szczupłe myślenie. Wrocław: Prod-Press.com.
  • [25] ZAKRZEWSKI, R., SKOWROŃSKA, A. (Ed.), 2019. Raport o stanie sektora małych i średnich przedsiębiorstw w Polsce. Warszawa: Polska Agencja Rozwoju Przedsiębiorczości.
  • [26] ZWOLIŃSKA, B., MICHLOWICZ, E., 2016. Impact of change in the structure of distribution system on incurred cost. Archives of Transport, 39(3), 192-202.
  • [27] ZWOLIŃSKA, B., 2019. Modelowanie procesów konwergentnych w złożonych systemach produkcyjnych. Kraków: Wydawnictwa AGH.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2021).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-29c916ff-7378-4cff-bc43-c58cbc20dfe4
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