Received 26.12.2023, Revised 03.03.2024, Accepted 26.04.2024
The relevance of the study is the need to improve the efficiency of managing the portfolio of medical projects for the development of hospital districts. The purpose of the article was to develop and use a model of synergistic management of a portfolio of medical projects for the development of hospital districts based on the telegraphic equation, which takes into account the synergistic relationships between projects and ensures maximum value from their implementation. The paper used the method of critical analysis of scientific literature on project management, information technology, synergistic management and medical project management, a model of synergistic management of a portfolio of medical projects based on the telegraphic equation, numerical methods, and the method of hierarchy analysis. An analysis of scientific papers on the available tools for managing medical projects was carried out. It was found that in 2024 there are no management tools that provide modelling of dynamic processes in systems with spatial and temporal interactions. The expediency of developing a model for synergistic management of a portfolio of medical projects using the telegraphic equation is substantiated. A model of synergistic management of a portfolio of medical projects based on the telegraphic equation is proposed. It involved 6 stages, which are based on the formation of a system of interconnected ordinary differential equations, which are a discrete analogy of the telegraph equation. Based on the developed model, a computer program was created that significantly speeds up the process of making management decisions on the implementation of project portfolios when their project environment changes. The adequacy of the computer program was checked. It was found that the created decision support tool provides accurate results in solving the problems of managing a portfolio of medical projects. The error between numerical and analytical solutions did not exceed 5%, which meets the requirements for such models. Based on the research, the status and synergistic effects of medical projects included in the hospital district development portfolio were quantified, and recommendations for project managers were developed. The obtained research results provide project managers with tools to quantify the status and synergies of healthcare projects in hospital district development portfolios in a given project environment, and recommendations for effective management of these portfolios have been developed
portfolio management; synergistic effect; modelling; differential equations; partial derivatives
[1] Albalawi, K.S., Shokhanda, R., & Goswami, P. (2023). On the solution of generalized time-fractional telegraphic equation. Applied Mathematics in Science and Engineering, 31(1), article number 2169685. doi: 10.1080/27690911.2023.2169685.
[2] Alothman, A., Kudikala, S., & Vilventhan, A. (2023). Identification of challenges influencing the adoption of building information modelling (BIM) and facility management for metro rail projects in India. In A. Vilventhan, S.B. Singh & V.S.K. Delhi (Eds.), Advances in construction materials and management. ACMM 2022. Lecture notes in civil engineering, 346. Singapore: Springer. doi: 10.1007/978-981-99-2552-0_5.
[3] Bilgin, G., Dikmen, I., Birgonul, M.T., & Ozorhon, B. (2023). A decision support system for project portfolio management in construction companies. International Journal of Information Technology and Decision Making, 22(2), 705-735. doi: 10.1142/S0219622022500821.
[4] Chernova, L., Zhuravel, A., Chernova, L., Chernov, S., Kunanets, N., & Artemenko, O. (2022). Application of the cognitive approach for IT project management and implementation. In 2022 IEEE 17th international conference on computer sciences and information technologies (CSIT), 426-429. Lviv: IEEE. doi: 10.1109/CSIT56902.2022.10000512.
[5] Czahajda, R. (2019). Project management practices in Polish nonprofit organisations. In Z. Wilimowska, L. Borzemski & J. Świątek (Eds.), Information systems architecture and technology: Proceedings of 39th international conference on information systems architecture and technology – ISAT 2018. Advances in intelligent systems and computing, 854. Cham: Springer. doi: 10.1007/978-3-319-99993-7_32.
[6] da Costa Carvalho, E., & Oliveira, S.R.B. (2022). The diversity of approaches to support software project management in the agile context: Trends, comparisons and gaps. In Proceedings of the 17th international conference on evaluation of novel approaches to software engineering ENASE, 1, 138-149. Setúbal: SciTePress. doi: 10.5220/0011063500003176.
[7] Ghule, R., Doddi, S., Wagh, S., Kazi, F., & Singh, N.M. (2015). Power based modeling and stabilization of telegraphers equations. In 2015 International conference on smart technologies and management for computing, communication, controls, energy and materials (ICSTM), 488-493, article number 7225466. Avadi: IEEE. doi: 10.1109/ICSTM.2015.7225466.
[8] Kock, A., Schulz, B., Kopmann, J., & Gemünden, H.G. (2020). Project portfolio management information systems’ positive influence on performance – the importance of process maturity. International Journal of Project Management, 38(4), 229-241. doi: 10.1016/j.ijproman.2020.05.001.
[9] Li, H., Wang, L., Zhang, Z., & Deng, C. (2021). Theoretical thought and practice of eco-environment synergistic management in the Yangtze River. Journal of Environmental Engineering Technology, 11(3), 409-417. doi: 10.12153/j.issn.1674-991X.20210071.
[10] Malanchuk, O., Tryhuba, A., Tryhuba, I., & Bandura, I. (2023a). A conceptual model of adaptive value management of project portfolios of creation of hospital districts in Ukraine. In Proceedings of the 4th international workshop IT project management (ITPM 2023). Kyiv.
[11] Malanchuk, O., Tryhuba, A., Tryhuba, I., Sholudko, R., & Pankiv, O. (2023b). A neural network model-based decision support system for time management in pediatric diabetes care projects. In 2023 IEEE 18th international conference on computer science and information technologies (CSIT 2023) (pp. 191-195). Lviv: IEEE.
[12] Ojiako, U., Petro, Y., Marshall, A., & Williams, T. (2023). The impact of project portfolio management practices on the relationship between organizational ambidexterity and project performance success. Production Planning and Control, 34(3), 260-274. doi: 10.1080/09537287.2021.1909168.
[13] Sales, L., & Barbalho, S. (2021). Exploitative model for dynamic project management based on the project management body of knowledge. In A.M. Tavares Thomé, R.G. Barbastefano, L.F. Scavarda, J.C. Gonçalves dos Reis & M.P.C. Amorim (Eds.), Industrial engineering and operations management. IJCIEOM 2021. Springer proceedings in mathematics & statistics, 367. Cham: Springer. doi: 10.1007/978-3-030-78570-3_34.
[14] Silva, D., De Jesus, K.L., Villaverde, B., Mecija, A.N., & Mendoza, J.O. (2021). Interdisciplinary framework: A building information modeling using structural equation analysis in lean construction project management. In Frontiers in artificial intelligence and applications (pp. 234-240). doi: 10.3233/FAIA210253.
[15] Singh, S., Singh, S., Lin, P., & Arora, R. (2019). Unconditionally stable modified methods for the solution of two- and three-dimensional telegraphic equation with Robin boundary conditions. Numerical Methods for Partial Differential Equations, 35(1), 246-266. doi: 10.1002/num.22299.
[16] Stovban, M.P. (2023). Implementation of the hospital district for the medical institutions: Medical and social justification of the financial and economic state of Kalush central district hospital before and after implementation. Medical Advances, 76(2), 243-250. doi: 10.36740/WLek202302101.
[17] Varajão, J., Lopes, L., & Tenera, A. (2025). Framework of standards, guides and methodologies for project, program, portfolio, and PMO management. Computer Standards & Interfaces, 92, article number 103888. doi: 10.1016/j.csi.2024.103888.
[18] Wahl, K., & Wiesche, M. (2024). Selecting project management approaches: The importance of client-specific characteristics. Procedia Computer Science, 239, 751-758. doi: 10.1016/j.procs.2024.06.232.
[19] Wang, L., Zheng, H., Chen, Y., Long, Y., Chen, J., Li, R., Hu, X., & Ouyang, Z. (2023). Synergistic management of forest and reservoir infrastructure improves multistakeholders’ benefits across the forest-water-energy-food nexus. Journal of Cleaner Production, 422, article number 138575. doi: 10.1016/j.jclepro.2023.138575.
[20] Wang, T., & Chen, H.-M. (2023). Integration of building information modeling and project management in construction project life cycle. Automation in Construction, 150, article number 104832. doi: 10.1016/j.autcon.2023.104832.
[21] Zhang, Y., Hou, W., & Qian, Y. (2020). A dynamic simulation model for financing strategy management of infrastructure PPP projects. International Journal of Strategic Property Management, 24(6), 441-455. doi: 10.3846/ijspm.2020.13627.