Description:
1. Appel, M., Konigorski, U., Walther, M.: A Graph Metric for Model Predictive Control of
Petri Nets. IFAC-Papers OnLine 51(2), 254–259 (2018). doi:10.1016/j.ifacol.2018.03.044
2. Aulin, V., Lyashuk, O., Pavlenko, O., Velykodnyi, D., Hrynkiv, A., Lysenko, S., Holub, D.,
Vovk,Y., Dzyura, V.: Realization of the logistic approach in the international cargo delivery
system. Communications – Scientific Letters of the University of Zilina 21(2), 3–12 (2019)
3. Cao, R., Hao, L., Wang, F., Gao, Q.: Modelling and analysis of hybrid stochastic timed Petri
net. Journal of Control and Decision 6(2), 90–110 (2019). doi:
10.1080/23307706.2017.1419079
4. Chinnusamy, T.R., Karthikeyan, T., Krishnan, M., Murugesan, A.: A Comprehensive
Survey of Flexible Manufacturing System Scheduling Using Petri Nets. Advanced Materials
Research 984–985, 111-117 (2014). doi:10.4028/www.scientific.net/AMR.984-985.111
5. Fernando, E., Surjandy, Warnars, H.L.H.S., Meyliana, Kosala, R., Abdurachman, E.:
Critical Success Factor of Information Technology Implementation in Supply Chain
Management: Literature Review. In: 5th International Conference Proceedings on
Information Technology, Computer, and Electrical Engineering (ICITACEE). IEEE (2018).
doi:10.1109/ICITACEE.2018.8576979
6. Gaied, M., M’halla, A., Lefebvre, D., Othmen, K.B.: Robust control for railway transport
networks based on stochastic P-timed Petri net models. Proceedings of the Institution of
Mechanical Engineers, Part I: Journal of Systems and Control Engineering 233(7), 830–846
(2019). doi:10.1177/0959651818823583
7. Giusti, R., Manerba, D., Bruno, G., Tadei, R.: Synchromodal logistics: An overview of
critical success factors, enabling technologies, and open research. Transportation Research
Part E: Logistics and Transportation Review 129, 92–110 (2019). 10.1016/j.tre.2019.07.009
8. Hasan, H., AlHadhrami, E., AlDhaheri, A., Salah, K., Jayaraman, R.: Smart contract-based
approach for efficient shipment management. Computers & Industrial Engineering 136,
149–159 (2019). doi:10.1016/j.cie.2019.07.022
9. Horbatiuk, R.M.: Modeliuvannia yak metod pobudovy protsesu formuvannia tvorchykh
zdibnostei maibutnikh inzheneriv-pedahohiv komp’iuternoho profiliu (Simulation as a
method for building the process of forming of creative abilities of future engineer-andpedagogies in computer technologies area of expertize). Komp’iuterno-oriientovani
tekhnolohii: osvita, nauka, vyrobnytstvo 3, 86–91 (2011)
10. V 2019 godu ukrainskie morskie porty ustanovili istoricheskii rekord perevalki (In 2019,
Ukrainian seaports set a historic transshipment record)
https://cfts.org.ua/news/2020/01/15/v_2019_godu_ukrainskie_morskie_porty_ustanovili_i
storicheskiy_rekord_perevalki_56874 (2020). Accessed 21 Mar 2020
11. Jin, C.F., Yang, Y.M., Wang, L.L.: Research on Optimization and Debugging Simulation
Model of Logistics Center Based on Neural Network. Applied Mechanics and Materials,
37–38, 1060-1063 (2010). doi:10.4028/www.scientific.net/AMM.37-38.1060
12. Kamburjan, E., Hähnle, R., Schön, S.: Formal modeling and analysis of railway operations
with active objects. Science of Computer Programming 166, 167–193 (2018).
doi:10.1016/j.scico.2018.07.001
13. Kernel Holding S.A.: H1 FY2020 results and company presentation.
https://www.kernel.ua/wpcontent/uploads/2020/03/Kernel_FY2020__H1_Presentation.pdf (2020). Accessed 21 Mar
2020
14. Kirichenko, A.I.: Problematyka zastosuvannia informatsiinykh tekhnolohii v upravlinni
protsesamy dostavky vantazhu (The Application of Information Technologies in the
Management of Cargo Delivery Processes). Problemy transportu 9, 17–27 (2012).
15. Konovalenko, I., Ludwig, A.: Event processing in supply chain management – The status
quo and research outlook. Computers in Industry 105, 229–249 (2019).
doi:10.1016/j.compind.2018.12.009
16. Pavlenko, O., Kopytkov, D.: An approach to determine the rational scheme of delivery for
the international consolidated shipments. Komunalne hospodarstvo mist 1(147), 35–41
(2019)
17. Lavrentieva, O.O., Arkhypov, I.O., Kuchma, O.I., Uchitel, A.D.: Use of simulators together
with virtual and augmented reality in the system of welders’ vocational training: past,
present, and future. In: Kiv, A.E., Shyshkina, M.P. (eds.) Proceedings of the 2nd
International Workshop on Augmented Reality in Education (AREdu 2019), Kryvyi Rih,
Ukraine, March 22, 2019. CEUR Workshop Proceedings 2547, 201–216. http://ceurws.org/Vol-2547/paper15.pdf (2020). Accessed 10 Feb 2020
18. Liu, Y.P., Fu, J.H., Feng, H.Y.: A Survey on the Object-Oriented Petri Net Modeling.
Applied Mechanics and Materials 121–126, 4350–4356 (2012).
doi:10.4028/www.scientific.net/AMM.121-126.4350
19. Muzylyov, D., Shramenko, N., Shramenko, V.: Integrated business-criterion to choose a
rational supply chain for perishable agricultural goods at automobile transportations.
International Journal of Business Performance Management 21(1/2), 166–183 (2020).
doi:10.1504/IJBPM.2020.10027634
20. Derzhstat Ukrainy: Krainy za tovarnoiu strukturoiu zovnishnoi torhivli na 2 zn. UKTZED
(Countries by commodity structure of foreign trade on 2 zn. UKTZED).
http://www.ukrstat.gov.ua/operativ/operativ2019/zd/kr_tstr/arh_kr_2019.htm (2020).
Accessed 10 Feb 2020
21. Pan S., Zhong, R.Y., Qu, T.: Smart product-service systems in interoperable logistics:
Design and implementation prospects. Advanced Engineering Informatics 42, 100996
(2019). doi:10.1016/j.aei.2019.100996
22. Peraković, D., Periša, M., Sente, R.E.: Information and Communication Technologies
Within Industry 4.0 Concept. In: Ivanov V. et al. (eds.) Advances in Design, Simulation and
Manufacturing. DSMIE 2018. Lecture Notes in Mechanical Engineering, pp. 127–134.
Springer, Cham (2018). doi:10.1007/978-3-319-93587-4_14
23. Petri Net Simulator Projects | Network Simulation Tools.
http://networksimulationtools.com/petri-net-simulator-projects (2020). Accessed 21 Mar
2020
24. Prostitenko, O.V., Halimon, A.Yu., Rogov, V.I.: Modeling of discrete systems based on
Petri nets (Modelirovanie diskretnyh sistem na osnove setej Petri). SPbGTI(TU), St.
Petersburg (2017)
25. Shramenko, N., Pavlenko, O., Muzylyov, D.: Information and Communication Technology:
Case of Using Petri Nets for Grain Delivery Simulation at Logistics System. CEUR
Workshop Proceedings 2353, 935–949 (2019)
26. Shramenko, N., Muzylyov, D.: Forecasting of Overloading Volumes in Transport Systems
Based on the Fuzzy-Neural Model. In: Ivanov, V. et al. (eds.) Advances in Design,
Simulation and Manufacturing II. DSMIE 2019. Lecture Notes in Mechanical Engineering,
pp. 311–320. Springer, Cham (2020). doi:10.1007/978-3-030-22365-6_31
27. Shramenko, N., Muzylyov, D., Shramenko, V.: Methodology of costs assessment for
customer transportation service of small perishable cargoes. International Journal of
Business Performance Management 21(1/2), 132–148 (2020).
doi:10.1504/IJBPM.2020.10027632
28. Teplytskyi, O.I., Teplytskyi, I.O., Semerikov, S.O., Soloviev, V.N.: Training future teachers
in natural sciences and mathematics by means of computer simulation: a social constructivist
approach. Vydavnychyi viddil DVNZ “Kryvorizkyi natsionalnyi universytet”, Kryvyi Rih
(2015)
29. Lesisin, I.: Defitcit tiagi. Chto ostanavlivaet ukrainskii eksport (Traction deficit. What stops
Ukrainian exports). https://biz.nv.ua/publications/defitsit-tjahi-chto-ostanavlivaetukrainskij-eksport-2483988.html (2018). Accessed 21 Mar 2020
30. Turpak, S.M., Taran, I.O., Fomin, O.V., Tretiak, O.O.: Logistic technology to deliver raw
material for metallurgical production. Naukovyi Visnyk Natsionalnoho Hirnychoho
Universytetu 1, 162–169 (2018). doi:10.29202/nvngu/2018-1/3
31. Pidsumky: U 2016 rotsi Ukraina postavyla rekord v eksporti zernovykh (Results: In 2016,
Ukraine set a record in grain exports). https://agro.me.gov.ua/ua/news/pidsumki-u-2016-
rotsi-ukraina-postavila-rekord-v-eksporti-zernovikh (2017). Accessed 21 Mar 2020
32. Velykodnyi D., Pavlenko, O.: The Choice of Rational Technology of Delivery of Grain
Cargoes in the Containers in the International Traffic. International journal for traffic and
transport engineering 7(2), 164–175 (2017). doi:10.7708/ijtte.2017.7(2).02
33. Wang, F., Xu, Z., Zhen, T., Zhang, X., Zhang, M.: Grain Logistics Management Information
System Based on Short Message Service Technology. In: Mechatronics and Automatic
Control Systems. Lecture Notes in Electrical Engineering, vol. 237. Springer, Cham (2014).
doi:10.1007/978-3-319-01273-5_62.
34. Zelikov, V.A., Akopova, E.S., Pilivanova, E.K., Popova, L.K.: Model of Management of
the Risk Component of Intermodal Transport: Information and Communication
Technologies of Transport Logistics. In: Perspectives on the Use of New Information and
Communication Technology (ICT) in the Modern Economy. ISC 2017. Advances in
Intelligent Systems and Computing, vol. 726. Springer, Cham (2019). doi:10.1007/978-3-
319-90835-9_77.
35. Zhang, G.X., He, S., Zhang, Z.Y.: Study on Model Validation of Logistics System Based on
Petri Nets. Applied Mechanics and Materials 195–196, 853–858 (2012).
doi:10.4028/www.scientific.net/AMM.195-196.853
36. Zhong, W.Z., Fu, X.Q., Wang, Y.P.: Petri Net Modeling: Container Terminal Production
Operation Processing System Analysis. Applied Mechanics and Materials 409–410, 1320–
1324 (2013). doi:10.4028/www.scientific.net/AMM.409-410.1320