Akıllı Lojistik Kavramı ve Genel Bilgiler
Özet
Referanslar
A. Alho, J. Silva, and J. Sousa, “A state-of-the-art modeling framework to improve congestion by changing the configuration/enforcement of urban logistics loading/unloading bays,” Procedia Soc. Behav. Sci., vol. 111, pp. 360–369, Feb. 2014.
Abdullayeva, A., Impact of Artificial Intelligence on Agricultural, Healthcare and Logistics Industries. Annals of Spiru Haret University. Economic Series, 19(2), 167-175,2019.
Ali MS, Vecchio M, Pincheira M, Dolui K, Antonelli F, Rehmani MH (2018) Applications of blockchains in the internet of things: a comprehensive survey. IEEE Commun Surv Tut 21(2):1676–1717.
Ameri, F., Patil, L., “Digital manufacturing market: a semantic web-based framework for agile supply chain deployment”, Journal of Intelligent Manufacturing 23(5), 2012, p. 1817-1832.
Atzori, L., Iera, A., Morabito, G.: The internet of things: a survey. Comput. Netw. 54(15), 2787–2805, 2010.
Azuma, R., Baillot, Y., Behringer, R., Feiner, S., Julier, S., & MacIntyre, B. (2001). Recent advances in augmented reality. IEEE computer graphics and applications, 21(6), p.34-47.
B. Dorsemaine, J. Gaulier, J. Wary, N. Kheir, and P. Urien, “Internet of Things: A definition & taxonomy,” in Proc. 9th Int. Conf. Next Gener. Mobile Appl. Service Technol., Cambridge, U.K., Sep. 2015, pp. 72–77.
Bagloee SA, Tavana M, Withers G, Patriksson M (2019) Tradable mobility permit with Bitcoin and Ethereum–A Blockchain application in transportation. Internet Things 8:100103.
Banks, J., “Introduction to simulation. In Proceedings of the 31st conference on Winter simulation: Simulation” a bridge to the future-Volume I, 1999, p. 7-13.
BAUMGRASS, A., (2015). “A conceptual architecture for an event-based information aggregation engine in smart logistics”, In EMISA, GI, September, p.109–123.
Behrends, V., Haunschild, M. & Galonske, N. (2016). Smart telematics enabling efficient rail transport - development of the ViWaS research and development project. In 6th Transport Research Arena (TRA2016), Book Series: Transportation Research Procedia, 14, 18-21 April 2016 (pp. 4430-4439). Warsaw, Poland.
Bijwaard, D.J., Van Kleunen, W.A., Havinga, P.J., Kleiboer, L., Bijl, M.J.: Industry: Using dynamic WSNs in smart logistics for fruits and pharmacy. In: Proceedings of the 9th ACM Conference on Embedded Networked Sensor Systems, pp. 218–231,2011.
Billhardt, H., et al.: Dynamic coordination in fleet management systems: toward smart cyber fleets. IEEE Intell. Syst. 29(3), 70–76, 2014.
Bo FENG, Qiwen YE, Operations management of smart logistics: A literature review and future research, Front. Eng. Manag. 2021, 8(3): 344–355.
Bowersox D.J., Logistical Management, McMillan Publishing Co., New York 1978.
Burstein, F., Holsapple, C.: Handbook on Decision Support Systems 1: Basic Themes. Springer Science & Business Media, 2008.
Byres, E., & Lowe, J. (2004). The myths and facts behind cyber security risks for industrial control systems. In Proceedings of the VDE Kongress ,116, p.213-218.
C. K. M. Lee, Y. Lv, K. K. H. Ng, W. Ho, and K. L. Choy, ‘‘Design and application of Internet of Things-based warehouse management system for smart logistics,’’ Int. J. Prod. Res., vol. 56, no. 8, pp. 2753–2768, Apr. 2018.
C.C. Lin and J.-W. Yang, ‘‘Cost-efficient deployment of fog computing systems at logistics centers in industry 4.0,’’ IEEE Trans. Ind. Informat., vol. 14, no. 10, pp. 4603–4611, Oct. 2018.
Cheng Xiuzhen, vd., Big Data and Kowledge Extraction for Cyber-Physical Systems, Received, 2015, p.1-3.
Crainic, T.G., Gendreau, M., Potvin, J.-Y.: Intelligent freight-transportation systems: assessment and the contribution of operations research. Transp. Res. Part C: Emerg. Technol. 17(6), 541–557, 2009.
Crosby, M., P. Pattanayak, S. Verma, and V. Kalyanaraman. 2016. Blockchain Technology: Beyond Bitcoin. Applied Innovation 2: 69.
D. Ghosh, “Big data in logistics and supply chain management—A rethinking step,” in Proc. Int. Symp. Adv. Comput. Commun. (ISACC), Silchar, India, Sep. 2015, pp. 168–173.
D. Giusto, A. Iera, G. Morabito, and L. Atzori, The Internet of Things: 20th Tyrrhenian Workshop on Digital Communications. Berlin, Germany: Springer, 2010.
D. McFarlane, V Giannikas, and W. Lu. 2016. Intelligent logistics: Involving the customer, Computers in Industry, vol. 81, pp. 105115.
D. Uckelmann, “A definition approach to smart logistics,” in Proc. 8th Int. Conf. NEW2AN 1st Russian Conf. Smart Spaces, Sep. 2008, pp. 273–284.
D. Zuehlke, “SmartFactory—Towards a factory-of things,” Annual Reviews in Control, vol. 34, no. 1, pp. 129–138, 2010. A. Radziwon, A. Bilberg, M. Bogers, and E. S. Madsen, “The Smart Factory: Exploring Adaptive and Flexible Manufacturing Solutions,” Procedia Engineering, vol. 69, 2014, p. 1184–1190.
Damien Trentesaux, etc. “Service Oriented, Holonic and Multi-Agent Manufacturing Systems for Industry of the Future”, Proceedings of Sohoma, Polish Academy of Sciences, Warsaw, Poland, Volume 952, 2020.
DOUAIOUI, K., (2018). “The interaction between industry 4.0 and smart logistics: concepts and perspectives”, Laboratoire d’Ingénierie Management Industriel et Innovation, p.128-131
E. Bardi, T. Raghunathan, and P. Bagchi, “Logistics information systems: The strategic role of top management,” J. Bus. Logistics, vol. 15, no. 1, pp. 71–85, 1994.
E. Hofmann and M. Rüsch, “Industry 4.0 and the current status as well as future prospects on logistics,” Computers in Industry, vol. 89, pp. 23– 34, Aug 2017.
E.A. Lee, “Cyber physical systems: design challenges”, 11th International Symposium on Object/Component/Service-Oriented Real-Time Distributed Computing, Orlando, Florida, USA, 2018, p. 363-364.
Eurostat European Comission. 2018. “Transportation and Storage Statistics – NACE Rev. 2.” Accessed September.
F. Kache, S Seuring. 2017. “Challenges and Opportunities of Digital Information at the Intersection of Big Data Analytics and Supply Chain Management.” International Journal of Operations & Production Management 37 (1): 10–36.
Fawcett, S.E., Wallin, C., Allred, C., Fawcett, A.M., Magnan, G.M., “Information technology as an enabler of supply chain collaboration: a dynamic‐capabilities perspective”, Journal of supply chain management 47(1), 2011, p. 38-59.
Fu Chien.C. Artificial intelligence in manufacturing and logistics systems: algorithms, applications, and case studies. International Journal of Production Research. International Journal of Production Research, 58:9, 2730- 2731.
G. Rathee et al., “A Blockchain Framework for Securing Connected and Autonomous Vehicles,” Sensors, 2019, vol. 19, no. 14, p. 3165.
Gershenfield, N.: When Things Start to Think. Henry Holt and Company, New York, 1999.
Glistau, E., “Industry 4.0, logistics 4.0 and materials-Chances and solutions”, a.g.m, 2018, pp. 307-314.
Gudehus, Timm, and Herbert Kotzab. 2009. Comprehensive Logistics. Berlin: Springer.
Günther Schuh, vd., Further Potentials of Smart Logistics, Laboratory for Machine Tools and Production Engineering WZL, RWTH Aachen University, Germany, The 41st CIRP Conference on Manufacturing Systems, 2008, p.95.
H. Kagermann, W. Wahlster, J. Helbig, Recommendations for Implementing the Strategic Initiative INDUSTRIE 4.0. Final Report of the Industrie 4.0 WorkingGroup, 2013.
H. Lipson, M. Kurman, Fabricated: The New World of 3D Printing, John Wiley & Sons, Hoboken, USA,2013.
Hightower, J., Borriello, G.: Location systems for ubiquitous computing. Computer 34(8) (August 2001); ISSN: 0018-9162.
Islam, Dewan Md Zahurul, Fabian J. Meier, Paulus T. Aditjandra, Thomas H. Zunder, and Giuseppe Pace. 2013. “Logistics and Supply Chain Management.” Research in Transportation Economics 41 (1): 3–16.
Issaoui, Y., Khiat, A., Bahnasse, A., Ouajji, H.: Toward smart logistics: engineering insights and emerging trends. Arch. Comput. Meth. Eng. 28, 3183–3210, 2020.
Izabela Dembinska, vd., “Smart Logistics”, Wydawnictwo edu-Libri ul. Zalesie 15, Kraków, 2018, p. 30-384.
J.A. Stankovic, “Research directions fort he Internet of Things”, IEEE IoT J., dergi ise degi adı, sayı, 2014, p. 3-9.
Jahangirian, M., Eldabi, T., Naseer, A., Stergioulas, L. K., & Young, T., “Simulation in manufacturing and business”, European journal of operational research, 203(1), 2010, p. 1-13.
Jedermann, R., Schouten, R., Sklorz, A., Lang, W., van Kooten, O.: Linking keeping quality models and sensor systems to an autonomous transport supervision system. In: Kreyenschmidt, J., Petersen, B. (eds.) Cold Chain-Management, Proceedings of the 2nd international Workshop Cold Chain Management, pp. 3–18, 2006.
K. Ashton, “That ‘Internet of Things’ thing,” RFID J., vol. 22, no. 7, pp. 97–114, Jun. 2009.
K. Windt, F Böse, T Philipp. 2008. “Autonomy in Production Logistics: Identification, Characterisation and Application.” International Journal of Robotics and Computer Integrated Manufacturing 24 (4): 572–578.
K. Witkowski, “Internet of Things, big data, industry 4.0—Innovative solutions in logistics and supply chains management,” in Proc. 7th Int. Conf. Eng. Project Prod. Manag., vol. 182, Sep. 2017, pp. 763–769.
Kagermann, H., Lukas, W. D., & Wahlster, W. (2011). Industrie 4.0: Mit dem Internet der Dinge auf dem Weg zur 4. industriellen Revolution. VDI nachrichten, p.13,11.
Kagermann, Henning, Wolfgang Wahlster, and Johannes Helbig. 2013. “Recommendations for Implementing the Strategic Initiative Industrie 4.0, Securing the Future of German Manufacturing Industry. Final Report of the Industrie 4.0 Working Group.” Forschungsunion, acatech. Accessed October.
Kerdprasop, N., et al., (2019) Anomaly detection with machine learning technique to support smart logistics. In: International conference on computational science and its applications (ICCSA 2019), pp 461–472.
Kohler, Dorothée, et Jean-Daniel Weisz. “Industrie 4.0 : comment caractériser cette quatrième révolution industrielle et ses enjeux ?”, Annales des Mines - Réalités industrielles, vol. novembre 2016, no. 4, 2016, p.51-56.
Královenský, J., et al. (2001). Postavenie dopravy v logistike. Žilina: Žilinská univerzita v EDIS – vydavatel’stvo ŽU. ISBN 80-7100-888-5.
L. Castro and S. Wamba, “An inside look at RFID tchnology,” J. Technol. Manag. Innovat., vol. 2, no. 1, pp. 128–139, Jan. 2007.
Lasi, Heiner, Hans-Georg Kemper, Peter Fettke, Thomas Feld, and Michael Hoffmann. 2017. “Industry 4.0.” Business & Information Systems Engineering 4: 239–242.
Li, S., Xu, L.D., Zhao, S.: The internet of things: a survey. Inf. Syst. Front. 17(2), 243–259, 2014.
Lukáš Kubáč and Oldřich Kodym, The Impact of 3D Printing Technology on Supply Chain, Technical University of Ostrava, 17. listopadu 2172/15, 708 00 Ostrava, Czech Republic, College of Logistics, Přerov, Palackého 1381/25, 750 02 Přerov, Czech Republic, MATEC Web of Conferences 134, 00027,2017.
M. Khan , X. Wu, X. Xu ve W. Do, Big Data Challenges and Opportunities in the Hype of Industry 4.0, P.R.China: State Key Labortary for Novel Software Technology, 2017.
M. Noura, M. Atiquzzaman, and M. Gaedke, “Interoperability in Internet of Things: Taxonomies and Open Challenges,” Mobile Networks and Applications, vol. 24, no. 3, 2019, pp. 796–809.
Marshalee.N et Al., The integration of automation and artificial intelligence into the logistics sector A Caribbean perspective 2020.
Martin Kirch, vd., RFID in Logistics and Production – Applications, Research and Visions for Smart Logistics Zones, 16thConference on Reliability and Statistics in Transportation and Communication, RelStat’2016, 19-22 October, 2016, Riga, Latvia, Procedia Engineering 178 ( 2017 ) 526 – 533.
Masoudinejad, M., et al., “Smart sensing devices for logistics application”, TU Dortmund University, Dortmund, Germany, Springer, Cham, 2017, p. 41–52.
Mc. Carthy, J.; Minsky, M.L.; Rochester, N.; Shannon, C.E., A Proposal for the Dartmouth Summer Research Project on Artificial Intelligence. AI Mag. 2006, 27, 12–14,2006.
Miorandi D, Sicari S, Pellegrini FD,” Internet of things: Vision, applications and research challenges”, Chlamtac I, 2012, p.1508.
Monostori, L., et al., “Cyber-physical systems in manufacturing”, CIRP Ann. 65(2), 2016, p. 621–641, Ounnar, F., Pujo, P., “Pilotage auto-organisé de l’Internet physique via des systèmes logistiques cyber-physiques: cas du transport Chine-France”, Logistique. Manage. 27(4), 2019, p. 255–263.
National Institute of Standards and Technology. 2011. “Special Publication 800-145.” The NIST Definition of Cloud Computing..
P. Lade, R. Ghosh, and S. Srinivasan, ‘‘Manufacturing analytics and industrial Internet of Things,’’ IEEE Intell. Syst., vol. 32, no. 3, pp. 74–79, May 2017.
P. Mell and T. Grance, The NIST Definition of Cloud Computing, document SP 800-145, NIST U.S. Dept. Commerce, Gaithersburg, MA, USA, Sep. 2011.
Paelke, V. (2014). Augmented reality in the smart factory: Supporting workers in an industry 4.0. environment. In Emerging Technology and Factory Automation (ETFA), IEEE, p.1-4.
Paprocki W (2016) How transport and logistics operators can implement the solutions of “Industry 4.0”. TranSopot Conference, pp 185–196.
Provost, F., Fawcett, T.: Data science and its relationship to big data and data-driven decision making, Big Data 1(1), 51–59, 2013.
R. Lancioni and R. Chandran, “The role of packaging in international logistics,” Int. J. Phys. Distrib. Logistics Manag., vol. 20, no. 8, pp. 41–43, Aug. 1990.
Rasim A., Yadigâr I. and Lyudmila S., “Cyber-physical systems and their security issues”, Institute of Information Technology, Azerbaijan National Academy of Sciences, sayı, vol, Azerbaijan, 2018, p. 213.
Richard Jurenka, Dagmar Cagánová, Natália Hornáková, The Smart Logistics, Institute of Industrial Engineering and Management, Faculty of Materials Science and Technology in Trnava, Slovak University of Technology in Bratislava, Slovakia, Mobility Internet of Things 2018, p. 277-278.
Ritzinger, U., Puchinger, J., Hartl, R.F.: A survey on dynamic and stochastic vehicle routing problems. Int. J. Prod. Res. 54(1), 215–231, 2016.
Rüßmann, M., Lorenz, M., Gerbert, P., Waldner, M., Justus, J., Engel, P., & Harnisch, M. (2015). Industry 4.0: The future of productivity and growth in manufacturing industries. Boston Consulting Group, 9.
S. Reinheimer, “Industrie 4.0: Herausforderungen, Konzepte und Praxisbeispiele,”, Springer Vieweg, Springer-Verlag, Wiesbaden, Germany, 2017, pp. 20 – 22.
S. Saberi, M Kouhizadeh, J Sarkis. 2018. Blockchain technology and its relationships to sustainable supply chain management. Taylor&Francis.
Schuhmacher, J., Hummel, V., “Decentralized control of logistic processes in cyber-physical production systems at the example of ESB logistics learning factory”, Procedia CIRP 54, 2016, p. 19–24.
Singh, P., van Sinderen, M., Wieringa, R.: Smart logistics: an enterprise architecture perspective. In: CEUR Workshop Proceedings, pp. 9–16, 2017.
Sivarajah, U., Kamal, M.M., Irani, Z., Weerakkody, V.: Critical analysis of big data challenges and analytical methods. J. Bus. Res. 70, 263–286, 2017.
T. Bauernhansl, M. ten Hompel and B. Vogel-Heuser, “ Industrie 4.0 in Produktion, Automatisierung und Logistik – Anwendungen, Technologien, Migration,“ Springer Vieweg, Springer-Verlag, Wiesbaden, Germany, 2014, pp.298-300.
T. Brockman, “21 warehousing trends in the 21st century,” IIE Solutions, vol. 31, no. 7, pp. 36–44, Jul. 1999.
T. Özgür Özkan, “A Contemporary Analysis Of Industry 4.0 for Logistics Supply Chain Management and Transportation”, Yüksek Lisans Tezi, Bahçeşehir Üniversitesi, 2019, p. 29.
T. Qu, S. P. Lei, Z. Z. Wang, D. X. Nie, X. Chen, and G. Q. Huang, “IoTbased real-time production logistics synchronization system under smart cloud manufacturing,” The International Journal of Advanced Manufacturing Technology, vol. 84, no. 1–4, 2015, pp. 147- 164.
Waller, M.A., Fawcett, S.E.: Data science, predictive analytics, and big data: a revolution that will transform supply chain design and management. J. Bus. Logist. 34(2), 77–84, 2013.
Xie, P., Li, J., Out, X., Liu, P., & Levy, R. (2010). Using Bayesian networks for cyber security analysis, pp. 211-220, In Dependable Systems and Networks (DSN), 2010 IEEE/IFIP international conference on IEEE.
Xu, L., He, W., Li, S.: Internet of things in industries: a survey. IEEE Trans. Industr. Inf. 10(4), 2233–2243, 2014.
Y. Tseng and W. Yue, “The role of transportation in logistics chain,” in Proc. Eastern Asia Soc. Transp. Stud., vol. 5, 2005, pp. 1657–1672.
Yang, H., L. Yang, and S. H. Yang. 2011. “Hybrid Zigbee RFID Sensor Network for Humanitarian Logistics Centre Management.” Journal of Network and Computer Applications 34 (3): 938–948.
Yanxing Song, vd., Applications of the Internet of Things (IoT) in Smart Logistics: A Comprehensive Survey, IEEE INTERNET OF THINGS JOURNAL, VOL. 8, NO. 6, MARCH 15, 2021, p. 4254-4255.
Yuen.S, Wu.H., Smart logistics and artificial intelligence practices in industry 4.0 era. International Journal of Managing Value and Supply Chains (IJMVSC) Vol. 13, No. 1,2022, March 2022.
Referanslar
A. Alho, J. Silva, and J. Sousa, “A state-of-the-art modeling framework to improve congestion by changing the configuration/enforcement of urban logistics loading/unloading bays,” Procedia Soc. Behav. Sci., vol. 111, pp. 360–369, Feb. 2014.
Abdullayeva, A., Impact of Artificial Intelligence on Agricultural, Healthcare and Logistics Industries. Annals of Spiru Haret University. Economic Series, 19(2), 167-175,2019.
Ali MS, Vecchio M, Pincheira M, Dolui K, Antonelli F, Rehmani MH (2018) Applications of blockchains in the internet of things: a comprehensive survey. IEEE Commun Surv Tut 21(2):1676–1717.
Ameri, F., Patil, L., “Digital manufacturing market: a semantic web-based framework for agile supply chain deployment”, Journal of Intelligent Manufacturing 23(5), 2012, p. 1817-1832.
Atzori, L., Iera, A., Morabito, G.: The internet of things: a survey. Comput. Netw. 54(15), 2787–2805, 2010.
Azuma, R., Baillot, Y., Behringer, R., Feiner, S., Julier, S., & MacIntyre, B. (2001). Recent advances in augmented reality. IEEE computer graphics and applications, 21(6), p.34-47.
B. Dorsemaine, J. Gaulier, J. Wary, N. Kheir, and P. Urien, “Internet of Things: A definition & taxonomy,” in Proc. 9th Int. Conf. Next Gener. Mobile Appl. Service Technol., Cambridge, U.K., Sep. 2015, pp. 72–77.
Bagloee SA, Tavana M, Withers G, Patriksson M (2019) Tradable mobility permit with Bitcoin and Ethereum–A Blockchain application in transportation. Internet Things 8:100103.
Banks, J., “Introduction to simulation. In Proceedings of the 31st conference on Winter simulation: Simulation” a bridge to the future-Volume I, 1999, p. 7-13.
BAUMGRASS, A., (2015). “A conceptual architecture for an event-based information aggregation engine in smart logistics”, In EMISA, GI, September, p.109–123.
Behrends, V., Haunschild, M. & Galonske, N. (2016). Smart telematics enabling efficient rail transport - development of the ViWaS research and development project. In 6th Transport Research Arena (TRA2016), Book Series: Transportation Research Procedia, 14, 18-21 April 2016 (pp. 4430-4439). Warsaw, Poland.
Bijwaard, D.J., Van Kleunen, W.A., Havinga, P.J., Kleiboer, L., Bijl, M.J.: Industry: Using dynamic WSNs in smart logistics for fruits and pharmacy. In: Proceedings of the 9th ACM Conference on Embedded Networked Sensor Systems, pp. 218–231,2011.
Billhardt, H., et al.: Dynamic coordination in fleet management systems: toward smart cyber fleets. IEEE Intell. Syst. 29(3), 70–76, 2014.
Bo FENG, Qiwen YE, Operations management of smart logistics: A literature review and future research, Front. Eng. Manag. 2021, 8(3): 344–355.
Bowersox D.J., Logistical Management, McMillan Publishing Co., New York 1978.
Burstein, F., Holsapple, C.: Handbook on Decision Support Systems 1: Basic Themes. Springer Science & Business Media, 2008.
Byres, E., & Lowe, J. (2004). The myths and facts behind cyber security risks for industrial control systems. In Proceedings of the VDE Kongress ,116, p.213-218.
C. K. M. Lee, Y. Lv, K. K. H. Ng, W. Ho, and K. L. Choy, ‘‘Design and application of Internet of Things-based warehouse management system for smart logistics,’’ Int. J. Prod. Res., vol. 56, no. 8, pp. 2753–2768, Apr. 2018.
C.C. Lin and J.-W. Yang, ‘‘Cost-efficient deployment of fog computing systems at logistics centers in industry 4.0,’’ IEEE Trans. Ind. Informat., vol. 14, no. 10, pp. 4603–4611, Oct. 2018.
Cheng Xiuzhen, vd., Big Data and Kowledge Extraction for Cyber-Physical Systems, Received, 2015, p.1-3.
Crainic, T.G., Gendreau, M., Potvin, J.-Y.: Intelligent freight-transportation systems: assessment and the contribution of operations research. Transp. Res. Part C: Emerg. Technol. 17(6), 541–557, 2009.
Crosby, M., P. Pattanayak, S. Verma, and V. Kalyanaraman. 2016. Blockchain Technology: Beyond Bitcoin. Applied Innovation 2: 69.
D. Ghosh, “Big data in logistics and supply chain management—A rethinking step,” in Proc. Int. Symp. Adv. Comput. Commun. (ISACC), Silchar, India, Sep. 2015, pp. 168–173.
D. Giusto, A. Iera, G. Morabito, and L. Atzori, The Internet of Things: 20th Tyrrhenian Workshop on Digital Communications. Berlin, Germany: Springer, 2010.
D. McFarlane, V Giannikas, and W. Lu. 2016. Intelligent logistics: Involving the customer, Computers in Industry, vol. 81, pp. 105115.
D. Uckelmann, “A definition approach to smart logistics,” in Proc. 8th Int. Conf. NEW2AN 1st Russian Conf. Smart Spaces, Sep. 2008, pp. 273–284.
D. Zuehlke, “SmartFactory—Towards a factory-of things,” Annual Reviews in Control, vol. 34, no. 1, pp. 129–138, 2010. A. Radziwon, A. Bilberg, M. Bogers, and E. S. Madsen, “The Smart Factory: Exploring Adaptive and Flexible Manufacturing Solutions,” Procedia Engineering, vol. 69, 2014, p. 1184–1190.
Damien Trentesaux, etc. “Service Oriented, Holonic and Multi-Agent Manufacturing Systems for Industry of the Future”, Proceedings of Sohoma, Polish Academy of Sciences, Warsaw, Poland, Volume 952, 2020.
DOUAIOUI, K., (2018). “The interaction between industry 4.0 and smart logistics: concepts and perspectives”, Laboratoire d’Ingénierie Management Industriel et Innovation, p.128-131
E. Bardi, T. Raghunathan, and P. Bagchi, “Logistics information systems: The strategic role of top management,” J. Bus. Logistics, vol. 15, no. 1, pp. 71–85, 1994.
E. Hofmann and M. Rüsch, “Industry 4.0 and the current status as well as future prospects on logistics,” Computers in Industry, vol. 89, pp. 23– 34, Aug 2017.
E.A. Lee, “Cyber physical systems: design challenges”, 11th International Symposium on Object/Component/Service-Oriented Real-Time Distributed Computing, Orlando, Florida, USA, 2018, p. 363-364.
Eurostat European Comission. 2018. “Transportation and Storage Statistics – NACE Rev. 2.” Accessed September.
F. Kache, S Seuring. 2017. “Challenges and Opportunities of Digital Information at the Intersection of Big Data Analytics and Supply Chain Management.” International Journal of Operations & Production Management 37 (1): 10–36.
Fawcett, S.E., Wallin, C., Allred, C., Fawcett, A.M., Magnan, G.M., “Information technology as an enabler of supply chain collaboration: a dynamic‐capabilities perspective”, Journal of supply chain management 47(1), 2011, p. 38-59.
Fu Chien.C. Artificial intelligence in manufacturing and logistics systems: algorithms, applications, and case studies. International Journal of Production Research. International Journal of Production Research, 58:9, 2730- 2731.
G. Rathee et al., “A Blockchain Framework for Securing Connected and Autonomous Vehicles,” Sensors, 2019, vol. 19, no. 14, p. 3165.
Gershenfield, N.: When Things Start to Think. Henry Holt and Company, New York, 1999.
Glistau, E., “Industry 4.0, logistics 4.0 and materials-Chances and solutions”, a.g.m, 2018, pp. 307-314.
Gudehus, Timm, and Herbert Kotzab. 2009. Comprehensive Logistics. Berlin: Springer.
Günther Schuh, vd., Further Potentials of Smart Logistics, Laboratory for Machine Tools and Production Engineering WZL, RWTH Aachen University, Germany, The 41st CIRP Conference on Manufacturing Systems, 2008, p.95.
H. Kagermann, W. Wahlster, J. Helbig, Recommendations for Implementing the Strategic Initiative INDUSTRIE 4.0. Final Report of the Industrie 4.0 WorkingGroup, 2013.
H. Lipson, M. Kurman, Fabricated: The New World of 3D Printing, John Wiley & Sons, Hoboken, USA,2013.
Hightower, J., Borriello, G.: Location systems for ubiquitous computing. Computer 34(8) (August 2001); ISSN: 0018-9162.
Islam, Dewan Md Zahurul, Fabian J. Meier, Paulus T. Aditjandra, Thomas H. Zunder, and Giuseppe Pace. 2013. “Logistics and Supply Chain Management.” Research in Transportation Economics 41 (1): 3–16.
Issaoui, Y., Khiat, A., Bahnasse, A., Ouajji, H.: Toward smart logistics: engineering insights and emerging trends. Arch. Comput. Meth. Eng. 28, 3183–3210, 2020.
Izabela Dembinska, vd., “Smart Logistics”, Wydawnictwo edu-Libri ul. Zalesie 15, Kraków, 2018, p. 30-384.
J.A. Stankovic, “Research directions fort he Internet of Things”, IEEE IoT J., dergi ise degi adı, sayı, 2014, p. 3-9.
Jahangirian, M., Eldabi, T., Naseer, A., Stergioulas, L. K., & Young, T., “Simulation in manufacturing and business”, European journal of operational research, 203(1), 2010, p. 1-13.
Jedermann, R., Schouten, R., Sklorz, A., Lang, W., van Kooten, O.: Linking keeping quality models and sensor systems to an autonomous transport supervision system. In: Kreyenschmidt, J., Petersen, B. (eds.) Cold Chain-Management, Proceedings of the 2nd international Workshop Cold Chain Management, pp. 3–18, 2006.
K. Ashton, “That ‘Internet of Things’ thing,” RFID J., vol. 22, no. 7, pp. 97–114, Jun. 2009.
K. Windt, F Böse, T Philipp. 2008. “Autonomy in Production Logistics: Identification, Characterisation and Application.” International Journal of Robotics and Computer Integrated Manufacturing 24 (4): 572–578.
K. Witkowski, “Internet of Things, big data, industry 4.0—Innovative solutions in logistics and supply chains management,” in Proc. 7th Int. Conf. Eng. Project Prod. Manag., vol. 182, Sep. 2017, pp. 763–769.
Kagermann, H., Lukas, W. D., & Wahlster, W. (2011). Industrie 4.0: Mit dem Internet der Dinge auf dem Weg zur 4. industriellen Revolution. VDI nachrichten, p.13,11.
Kagermann, Henning, Wolfgang Wahlster, and Johannes Helbig. 2013. “Recommendations for Implementing the Strategic Initiative Industrie 4.0, Securing the Future of German Manufacturing Industry. Final Report of the Industrie 4.0 Working Group.” Forschungsunion, acatech. Accessed October.
Kerdprasop, N., et al., (2019) Anomaly detection with machine learning technique to support smart logistics. In: International conference on computational science and its applications (ICCSA 2019), pp 461–472.
Kohler, Dorothée, et Jean-Daniel Weisz. “Industrie 4.0 : comment caractériser cette quatrième révolution industrielle et ses enjeux ?”, Annales des Mines - Réalités industrielles, vol. novembre 2016, no. 4, 2016, p.51-56.
Královenský, J., et al. (2001). Postavenie dopravy v logistike. Žilina: Žilinská univerzita v EDIS – vydavatel’stvo ŽU. ISBN 80-7100-888-5.
L. Castro and S. Wamba, “An inside look at RFID tchnology,” J. Technol. Manag. Innovat., vol. 2, no. 1, pp. 128–139, Jan. 2007.
Lasi, Heiner, Hans-Georg Kemper, Peter Fettke, Thomas Feld, and Michael Hoffmann. 2017. “Industry 4.0.” Business & Information Systems Engineering 4: 239–242.
Li, S., Xu, L.D., Zhao, S.: The internet of things: a survey. Inf. Syst. Front. 17(2), 243–259, 2014.
Lukáš Kubáč and Oldřich Kodym, The Impact of 3D Printing Technology on Supply Chain, Technical University of Ostrava, 17. listopadu 2172/15, 708 00 Ostrava, Czech Republic, College of Logistics, Přerov, Palackého 1381/25, 750 02 Přerov, Czech Republic, MATEC Web of Conferences 134, 00027,2017.
M. Khan , X. Wu, X. Xu ve W. Do, Big Data Challenges and Opportunities in the Hype of Industry 4.0, P.R.China: State Key Labortary for Novel Software Technology, 2017.
M. Noura, M. Atiquzzaman, and M. Gaedke, “Interoperability in Internet of Things: Taxonomies and Open Challenges,” Mobile Networks and Applications, vol. 24, no. 3, 2019, pp. 796–809.
Marshalee.N et Al., The integration of automation and artificial intelligence into the logistics sector A Caribbean perspective 2020.
Martin Kirch, vd., RFID in Logistics and Production – Applications, Research and Visions for Smart Logistics Zones, 16thConference on Reliability and Statistics in Transportation and Communication, RelStat’2016, 19-22 October, 2016, Riga, Latvia, Procedia Engineering 178 ( 2017 ) 526 – 533.
Masoudinejad, M., et al., “Smart sensing devices for logistics application”, TU Dortmund University, Dortmund, Germany, Springer, Cham, 2017, p. 41–52.
Mc. Carthy, J.; Minsky, M.L.; Rochester, N.; Shannon, C.E., A Proposal for the Dartmouth Summer Research Project on Artificial Intelligence. AI Mag. 2006, 27, 12–14,2006.
Miorandi D, Sicari S, Pellegrini FD,” Internet of things: Vision, applications and research challenges”, Chlamtac I, 2012, p.1508.
Monostori, L., et al., “Cyber-physical systems in manufacturing”, CIRP Ann. 65(2), 2016, p. 621–641, Ounnar, F., Pujo, P., “Pilotage auto-organisé de l’Internet physique via des systèmes logistiques cyber-physiques: cas du transport Chine-France”, Logistique. Manage. 27(4), 2019, p. 255–263.
National Institute of Standards and Technology. 2011. “Special Publication 800-145.” The NIST Definition of Cloud Computing..
P. Lade, R. Ghosh, and S. Srinivasan, ‘‘Manufacturing analytics and industrial Internet of Things,’’ IEEE Intell. Syst., vol. 32, no. 3, pp. 74–79, May 2017.
P. Mell and T. Grance, The NIST Definition of Cloud Computing, document SP 800-145, NIST U.S. Dept. Commerce, Gaithersburg, MA, USA, Sep. 2011.
Paelke, V. (2014). Augmented reality in the smart factory: Supporting workers in an industry 4.0. environment. In Emerging Technology and Factory Automation (ETFA), IEEE, p.1-4.
Paprocki W (2016) How transport and logistics operators can implement the solutions of “Industry 4.0”. TranSopot Conference, pp 185–196.
Provost, F., Fawcett, T.: Data science and its relationship to big data and data-driven decision making, Big Data 1(1), 51–59, 2013.
R. Lancioni and R. Chandran, “The role of packaging in international logistics,” Int. J. Phys. Distrib. Logistics Manag., vol. 20, no. 8, pp. 41–43, Aug. 1990.
Rasim A., Yadigâr I. and Lyudmila S., “Cyber-physical systems and their security issues”, Institute of Information Technology, Azerbaijan National Academy of Sciences, sayı, vol, Azerbaijan, 2018, p. 213.
Richard Jurenka, Dagmar Cagánová, Natália Hornáková, The Smart Logistics, Institute of Industrial Engineering and Management, Faculty of Materials Science and Technology in Trnava, Slovak University of Technology in Bratislava, Slovakia, Mobility Internet of Things 2018, p. 277-278.
Ritzinger, U., Puchinger, J., Hartl, R.F.: A survey on dynamic and stochastic vehicle routing problems. Int. J. Prod. Res. 54(1), 215–231, 2016.
Rüßmann, M., Lorenz, M., Gerbert, P., Waldner, M., Justus, J., Engel, P., & Harnisch, M. (2015). Industry 4.0: The future of productivity and growth in manufacturing industries. Boston Consulting Group, 9.
S. Reinheimer, “Industrie 4.0: Herausforderungen, Konzepte und Praxisbeispiele,”, Springer Vieweg, Springer-Verlag, Wiesbaden, Germany, 2017, pp. 20 – 22.
S. Saberi, M Kouhizadeh, J Sarkis. 2018. Blockchain technology and its relationships to sustainable supply chain management. Taylor&Francis.
Schuhmacher, J., Hummel, V., “Decentralized control of logistic processes in cyber-physical production systems at the example of ESB logistics learning factory”, Procedia CIRP 54, 2016, p. 19–24.
Singh, P., van Sinderen, M., Wieringa, R.: Smart logistics: an enterprise architecture perspective. In: CEUR Workshop Proceedings, pp. 9–16, 2017.
Sivarajah, U., Kamal, M.M., Irani, Z., Weerakkody, V.: Critical analysis of big data challenges and analytical methods. J. Bus. Res. 70, 263–286, 2017.
T. Bauernhansl, M. ten Hompel and B. Vogel-Heuser, “ Industrie 4.0 in Produktion, Automatisierung und Logistik – Anwendungen, Technologien, Migration,“ Springer Vieweg, Springer-Verlag, Wiesbaden, Germany, 2014, pp.298-300.
T. Brockman, “21 warehousing trends in the 21st century,” IIE Solutions, vol. 31, no. 7, pp. 36–44, Jul. 1999.
T. Özgür Özkan, “A Contemporary Analysis Of Industry 4.0 for Logistics Supply Chain Management and Transportation”, Yüksek Lisans Tezi, Bahçeşehir Üniversitesi, 2019, p. 29.
T. Qu, S. P. Lei, Z. Z. Wang, D. X. Nie, X. Chen, and G. Q. Huang, “IoTbased real-time production logistics synchronization system under smart cloud manufacturing,” The International Journal of Advanced Manufacturing Technology, vol. 84, no. 1–4, 2015, pp. 147- 164.
Waller, M.A., Fawcett, S.E.: Data science, predictive analytics, and big data: a revolution that will transform supply chain design and management. J. Bus. Logist. 34(2), 77–84, 2013.
Xie, P., Li, J., Out, X., Liu, P., & Levy, R. (2010). Using Bayesian networks for cyber security analysis, pp. 211-220, In Dependable Systems and Networks (DSN), 2010 IEEE/IFIP international conference on IEEE.
Xu, L., He, W., Li, S.: Internet of things in industries: a survey. IEEE Trans. Industr. Inf. 10(4), 2233–2243, 2014.
Y. Tseng and W. Yue, “The role of transportation in logistics chain,” in Proc. Eastern Asia Soc. Transp. Stud., vol. 5, 2005, pp. 1657–1672.
Yang, H., L. Yang, and S. H. Yang. 2011. “Hybrid Zigbee RFID Sensor Network for Humanitarian Logistics Centre Management.” Journal of Network and Computer Applications 34 (3): 938–948.
Yanxing Song, vd., Applications of the Internet of Things (IoT) in Smart Logistics: A Comprehensive Survey, IEEE INTERNET OF THINGS JOURNAL, VOL. 8, NO. 6, MARCH 15, 2021, p. 4254-4255.
Yuen.S, Wu.H., Smart logistics and artificial intelligence practices in industry 4.0 era. International Journal of Managing Value and Supply Chains (IJMVSC) Vol. 13, No. 1,2022, March 2022.