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Integrated Subsystems of Materials and Information Flow for Continuous Manufacturing of Coal and Steel


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H. Kagermann, W. Wahlster, J. Helbig, eds., Recommendations for implementing the strategic initiative Industrie 4.0: Final report of the Industrie 4.0. Working Group: Industrie 4.0: Mit dem Internet der Dinge auf dem Weg zur 4. industriellen Revolution, VDI-Nachrichten, Acatech-National Academy of Science and Engineering: München, Germany, April 2011 [online:] http://forschungsunion.de/pdf/industrie_4_0_final_report.pdf. Search in Google Scholar

H. Kagermann, Change Through Digitalization – Value Creation in the Age of Industry 4.0, [in:]: H. Albach et al. (eds.), Management of Permanent Change, Springer Fachmedien Wiesbaden, 23-45, 2015. Search in Google Scholar

O. Cardin, Classification of cyber-physical production systems applications: Proposition fan analysis framework. Computers in Industry, Volume 104, January 2019, pp. 11-21, [online] https://doi.org/10.1016/j.com-pind.2018.10.002 Search in Google Scholar

A. Kamiński, „Inteligentna fabryka” – nowe trendy w rozwoju systemów informatycznych dla przemysłu. „Intelligent Factory” – new trends in development information systems for industry (Zarządzanie i Finanse) Journal of Management and Finance Vol. 16, No. 3/2/2018. Search in Google Scholar

M. Broy, Cyber-Phisical Systems. Innovation Durch Software-Intensive Eingebettete Systeme, Springer, Monachium, 2010 [online] https://link.springer.com/article/10.1007/s10845-021-01790-3. Search in Google Scholar

S. Wang et al. An integrated Scheme for cyber-physical building energy management system, Procedia Eng. 2011. Search in Google Scholar

H. Kagermann, W. Wahlster, J. Helbig, Umsetzungsemp-fehlungen für das Zukunftsprojekt Industrie 4.0. Abschluss-bericht des Arbeitskreises Industrie 4.0, ACATECH – Deutsche Akademie der Technikwissenschafte, 2013. Search in Google Scholar

T. Georgieva, H. Yahoui, N. Bencheva, P. Daskalov, D. Banjerdpongchai and P. Kittisupakorn, Innovative PLC training laboratory for developing industry 4.0 skills. Media and Technology with ECTI Northern Section Conference on Electrical, Electronics, Computer and Telecommunications Engineering (ECTI DAMT & NCON), 2022. Search in Google Scholar

National Institute of Standards and Technology (NIST), definition: smart manufacturing Search in Google Scholar

A. Kusiak, Smart manufacturing, International Journal of Production Research, 56:1-2, pp. 508-517, 2018, DOI: 10.1080/00207543.2017.1351644. Search in Google Scholar

F. Tao, Q. Qi, L. Wang, A.Y.C. Nee, Digital twins and cyber–physical systems toward smart manufacturing and Industry 4.0: correlation and comparison, Engineering 2019; 5(4), pp. 653-61 Search in Google Scholar

R.Y. Zhong, C. Xu, C. Chen, and G. Q. Huang. “Big Data Analytics for Physical Internet-based Intelligent Manufacturing Shop Floors.” International Journal of Production Research 55 (9): pp. 2610-2621, 2017. Search in Google Scholar

K.D. Thoben, S. Wiesner, T. Wuest ‘‘Industrie 4.0” and smart manufacturing- a review of research issues and application examples. Int J Autom Technol, 2017; 11(1): pp. 4-16. Search in Google Scholar

B. Wang, F. Tao, X. Fang, Ch Liu, Y. Liu, T. Freiheit, Smart Manufacturing and Intelligent Manufacturing: A Comparative Review, Engineering 7, 2021, pp. 738-757. Search in Google Scholar

S. Phuyal, D. Bista, R. Bista, Challenges, Opportunities and Future Directions of Smart Manufacturing: A State of Art Review. Sustainable Futures Volume 2, 2020, 100023. https://doi.org/10.1016/j.sftr.2020.100023 Search in Google Scholar

A.W. Colombo, M. Gepp, J. Barata, P. Leitão, J. Barbosa, J. Wermann, (eds), Digitalized and harmonized industrial production systems, 1st edn. CRC Press, First edition. Boca Raton, FL: CRC Press/Taylor & Francis, 2019. https://doi.org/10.1201/9780429263316, [online] https://www.taylorfrancis.com/books/9780429553899 Search in Google Scholar

H.S. Kang et al., “Smart manufacturing: Past research, present findings, and future directions,” Int. J. Precis. Eng. Manuf. - Green Technol., vol. 3, no. 1, pp. 111-128, 2016. Search in Google Scholar

R. Baheti, “The Impact of Control Technology: Cyber-physical Systems,” IEEE Control Syst. Soc., pp. 1-6, 2011. Search in Google Scholar

P. Zheng, Wang H., Sang Z., Zhong R.Y., Liu Y., Liu C., et al. Smart manufacturing systems for Industry 4.0: conceptual framework, scenarios, and future perspectives. Front Mech Eng 2018; 13(2): pp. 137-150. Search in Google Scholar

Y.F., Zhang. D. Zhang, S. Ren, Survey on current research and future trends of smart manufacturing and its key technologies. Mech Sci Technol Aerosp Eng. 2019; 38:329-38. Search in Google Scholar

D. Romero and F. Vernadat, “Enterprise information systems state of the art: Past, present and future trends,” Comput. Ind., vol. 79, pp. 3-13, 2016. Search in Google Scholar

M.L. Markus, C. Tanis and P.C. Van Fenema, Enterprise resource planning: multisite ERP implementations, Communications of the ACM, 43(4): pp. 42-46, 2000. Search in Google Scholar

Deloitte about ERP Industry 4.0 Is your ERP system ready for the digital era? Deloitte [online] https://www2.deloitte.com › dam › technology. Search in Google Scholar

İ.Z. Akyurt, Y. Kuvvetli and M. Deveci, Enterprise Resource Planning in the Age of Industry 4.0: A General Overview, In: Logistics 4.0: Digital Transformation of Supply Chain Management, (eds) T. Paksoy, C. Koçhan, S.S. Ali, Routlage/Taylor and Francis, 2021, pp. 178-185. Search in Google Scholar

M. Mcclellan, “Introduction to manufacturing execution systems,” MES Conf. Expo., pp. 1-12, 2001. Search in Google Scholar

M. Naedele, H-M. Chen, R. Kazman, Y. Cai, L. Xiao, C. Silva. Manufacturing execution systems: a vision for managing software development. JSystSoftw.101, pp. 59-68, 2015. Search in Google Scholar

R. Baheti, “The Impact of Control Technology: Cyber-physical Systems,” IEEE Control Syst. Soc., pp. 1-6, 2011. Search in Google Scholar

S. Mantravadia, Ch. Møllera, An Overview of Next-generation Manufacturing Execution Systems: How important is MES forInudtsry 4.0? Procedia Manufacturing 30, 2019, pp. 588-595 2351-9789. https://creativecommons.org/licenses/by-nc-nd/4.0/) Search in Google Scholar

B.S. De Ugarte, A. Artiba, and R. Pellerin, “Manufacturing execution system – A literature review,” Prod. Plan. Control, vol. 20, no. 6, pp. 525-539, 2009. Search in Google Scholar

O. Sauer, “Information technology for the factory of the future – State of the art and need for action,” Procedia CIRP, vol. 25, no. C, pp. 293-296, 2014. Search in Google Scholar

G. Gunia, Zintegrowane systemy informatyczne przedsię-biorstw w kontekście przemysłu 4.0, Zarządzanie Przedsię-biorstwem. Enterprise Management, Volume 22, Number 2, June 2019, pp. 7-12. DOI: 10.25961/ent.ma-nag.22.02.02 Search in Google Scholar

Caggiano A., Caiazzo F., Teti R., Digital Factory approach for flexibility and efficient manufacturing systems in the aerospace industry, Procedia CIRP, 37, 2015. Search in Google Scholar

T. Paksoy, C. Koçhan, S.S. Ali (eds), Logistics 4.0: Digital Transformation of Supply Chain Management, Publisher: Taylor and Francis, 2021. Search in Google Scholar

R. Danel, J. Skotnica, Information and Control System of CSM Coal Mine Preparation Plant. Mine Planning and Equipment Selection MPES’97, VŠB TU Ostrava, Ostrava, Czechia, 1997, pp. 608-613. Search in Google Scholar

B. Gajdzik, The road of Polish steelworks towards market success -changes after restructuring process. Metalurgija 2013, 52, pp. 421-424 Search in Google Scholar

B. Gajdzik, R. Wolniak, Digitalisation and Innovation in the Steel Industry in Poland – Selected Tools of ICT in an Analysis of Statistical Data and a Case Study, Energies 2021, 14, 3034. https://doi.org/10.3390/en14113034. Search in Google Scholar

B. Gajdzik World Class manufacturing in metallurgical enterprise. Metalurgija, 52, pp. 131-134, 2013. Search in Google Scholar

B. Gajdzik, How Steel Mills Transform into Smart Mills: Digital Changes and Development Determinants in the Polish Steel Industry, European Research Studies Journal XXV (Issue 1):27-42, DOI: 10.35808/ersj/2827, January 2022. Search in Google Scholar

B. Gajdzik Diagnoza kierunków transformacji przemysłu stalowego w Przemyśle 4.0, Title in English: Diagnosis of the steel Industry transformation direction in the Industry 4.0. Monograph 945 Publisher: Silesian University of Technology, Gliwice 468 pp, 2022. Search in Google Scholar

B. Gajdzik, R. Wolniak R., Transitioning of Steel Producers to the Steelworks 4.0 – Literature Review with Case Studies. Energies, 14, 2021, 4109; https://doi.org/10.3390/en14144109. Search in Google Scholar

M. Gregor, S. Medvecky, B. Mičieta, J. Matuszek, A. Hrčekova, Digitalny podnik, Žilinska Univerzita, Žilina, 2006. Search in Google Scholar

A. Januszewski, Funkcjonalność informatycznych systemów zarządzania: Zintegrowane systemy transakcyjne, Wydawnictwo Naukowe PWN, 2008. Search in Google Scholar

G. Gunia, Zintegrowane systemy informatyczne zarządzania w praktyce produkcyjnej, Wydawnictwo Fundacji Centrum Nowych Technologii, Bielsko-Biała, 2010. Search in Google Scholar

B. Gajdzik, R. Wolniak, W. Grebski, Process of Transformation to Net Zero Steelmaking: Decarbonisation Scenarios Based on the Analysis of the Polish Steel Industry. Energies 2023, 16, 3384. https://doi.org/10.3390/en16083384. Search in Google Scholar

B. Gajdzik, E. Sujová, and W. Biały, Decarbonisation of the steel industry: theoretical and practical approaches with analysis of the situation in the steel sector in Poland. Acta Montanistica Slovaca, 2023, Volume 28 (3), pp. 621-636 Search in Google Scholar

R. Danel, Information Support for Control of Preparation Processes, Technical Univerzity in Košice, Slovakia, Monography, 2014, ISBN: 978-80-553-1768-7. Search in Google Scholar

R. Danel, Trends in Information Systems for Production Control in the Raw Industry. Liberec Informatics Forum LIF 2016, Liberec, 2016, pp. 19-26. Search in Google Scholar

Qu YJ, Ming XG, Liu ZW, Zhang XY, Hou ZT. Smart manufacturing systems: state of the art and future trends. Int J Adv Manuf Technol 2019;103(9-12):3751-68. Search in Google Scholar

R. Danel, and J. Chlopecký, Implementation of Industry 4.0 in Continuous Production. SMSIS 2023, VŠB-TU Ostrava, Ostrava, 2023. Search in Google Scholar

B. Gajdzik, S. Grabowska, S. Saniuk. A Theoretical Frame-work for Industry 4.0 and Its Implementation with Selected Practical Schedules. Energies, 14 (4), 1-24, 2021, 940. https://doi.org/10.3390/en14040940, doi: 10.3390/en14040940 Search in Google Scholar

H. Peters, Application of Industry 4.0 concepts at steel production from an applied research perspective. Presentation at 17th IFAC Symposium on Control, Optimization, and Automation in Mining, Mineral and Metal Processing, 2016, [online:] https://tc.ifac-control.org/6/2/files/symposia/vienna-2016/mmm2016_keynotes_peters.Power-Point-Präsentation (ifac-control.org). Search in Google Scholar

Ch. Neef, S. Hirzel, M. Arens, Industry 4.0 in the European Iron and Steel Industry: Towards an Overview of Implementations and Perspectives, Working document Fraunhofer Institute for Systems and Innovation Research ISI, September 2018. Search in Google Scholar

K.W. Herzog, The Digitalization of Steel Production. BHM Berg- und Hüttenmännische Monatshefte, 162(11), 2017, pp. 504-513. Search in Google Scholar

R. Miskiewicz, R. Wolniak, Practical Application of the Industry 4.0 Concept in a Steel Company. Sustainability, 12, 2020, 5776; DOI:10.3390/su1214577. Search in Google Scholar

K. Tobór-Osadnik, B. Gajdzik, G. Strzelec, Configurational Path of Decarbonisation Based on Coal Mine Methane (CMM): An Econometric Model for the Polish Mining Industry. Sustainability 2023, 15, 9980. https://doi.org/10.3390/su15139980 Search in Google Scholar

European Green Deal. Komunikat Komisji do Parlamentu Europejskiego, Rady Europejskiej, Rady, Komitetu Ekonomiczno-Społecznego i Komitetu Regionów, Bruksela 11.12.2019, COM(2019)640 Final. Available online: https://eur-lex.europa.eu/legal-con-tent/pl/TXT/?uri=CELEX%3A52019DC0640 (accessed on 15 June 2021). Search in Google Scholar

B. Li, X. Chai, L. Zhang, B. Hou, Y. Liu, Accelerate the development of intelligent manufacturing technologies, industries, and application under the guidance of a new-generation of artificial intelligence technology. Chin Acad Eng 2018;20(4):73-8. Search in Google Scholar

R. Danel, B. Gajdzik, L. Ropyak, Trends in data processing control in continuous production systems, Zeszyty Naukowe Politechniki Śląskiej, Organizacja i Zarządzanie, 2023. Search in Google Scholar

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