THE INDIVIDUAL COMPETENCES STRATIFICATION IN ORDER TO BUILD THE DYNAMIC MORPHOLOGICAL MODELS OF PROJECT MANAGEMENT

Authors

  • Іраіда Іванівна Становська Одеський національний політехнічний університет, Ukraine https://orcid.org/0000-0003-0601-7658
  • Катерина Вікторівна Колеснікова Одеський технологічний університет «ШАГ», Ukraine

DOI:

https://doi.org/10.20998/2413-3000.2019.1326.5

Keywords:

individual competences, stratification, morphological models, process management, project activity

Abstract

Existing standards for project, program and portfolio management are based on the individual competencies of individuals, teams, managers and organizations based on their creativity. One of the areas of such creativity is the creation of a morphological environment for project activities, against which modern methods of solving optimization design and management problems can be applied. The aim of the work was to increase the effectiveness of project planning and project product quality through the development and implementation of project management dynamic morphological models based on dynamic morphological models of individual competencies. To achieve this aim, the following tasks were solved: to develop dynamic models of competent structuring, which take into account the elements of the three groups of Eye competences and their origin and development in time of project and program management; to perform stratification of dynamic elements of competencies by level of mathematical abstraction, physical essence and functional affiliation; practical tests of the study results with the assessment of their technical and economic benefits before known methods. The proposed morphological models, which are based on the allocation (stratification) of the project space structural components individual competencies in all directions of the latter discretization: individual projects, programs and project portfolios, functional areas of the project activity that can vary significantly depending on the mentality the respective state, sphere of competence (people, practice, prospects), etc. As a result of aim-setting and planning of the project activity, the Protomodel appears as the beginning of the latter, the first "edition" of the dynamic multidimensional morphological model. With the beginning of the project activity there is a "Big Bang" Protomodel, which in the future leads to its dynamic expansion. Simultaneously with the development of the main project for waterfall technology, there may be a need for an additional subproject that has its own prototype and after its "Big Bang" further develops, for example, according to one of the well-known flexible AGILE technologies of PM. The individual competencies stratification (on the level of mathematical abstraction, physical essence and functional belonging) is executed. The morphological models and methods of management of project activity processes have been constructed. Examples of morphological models and methods of project activity management are presented and their adequacy is confirmed. Practical tests of the results of the research with the assessment of their social benefits through known methods have been carried out

Author Biographies

Іраіда Іванівна Становська, Одеський національний політехнічний університет

Доцент кафедри вищої математики та моделювання систем

Катерина Вікторівна Колеснікова, Одеський технологічний університет «ШАГ»

Професор кафедри інформаційних технологій

References

A Guide to the project management body of knowledge (PMBoK guide). 5th Edition. Project Management Institute, Four Campus Boulevard, Newtown Square, 2013. 586 p.

Wollack, Edward J. Cosmology: The Study of the Universe. Universe 101: Big Bang Theory. NASA (10 December 2010). Available at: https://map.gsfc.nasa.gov/universe/ (accessed 11.10.2018).

Bushuev S. D., Bushuev D. A., Yaroshenko R. F. Deformacyja polja kompetencyj v ynnovacyonnыkh proektakh [Deformation field of competence in innovative projects]. Visnyk nacionaljnogho tekhnichnogho universytetu «KhPI». Zbirnyk naukovykh pracj. Serija: Strateghichne upravlinnja, upravlinnja portfeljamy, proghramamy ta proektamy [Bulletin of NTU "KhPI". Series: Strategic management, portfolio, program and project management]. Kharkov : NTU "KhPI", 2017, no. 2 (1224). pp. 3–7. DOI: 10.20998/2413-3000.2017.1224.1.

Gogunskij V. D., Stanovskaya I. I., Gurev I. N. Zakon Bushueva – gharantyja nepolnoj transformacyy seryjnыkh proektov v operacyonnuju dejateljnostj [Bushuev's law is a guarantee of incomplete transformation of serial projects into operational activities]. Vostochno-Yevropeyskiy zhurnal peredovykh tekhnologiy [Eastern-European Journal of Enterprise Technologies]. Harkov, 2013, no. 4/3 (64), pp. 41–44.

Bushuev S. D., Bushuev D. A. Osnovy yndyvydualjnыkh kompetencyj dlja Upravlenyja Proektamy, Proghrammamy y Portfeljamy (National Competence Baseline, NCB Version 4.0). vol. 1. Upravlenye proektamy [Fundamentals of Individual Competences for Project Management, Program and Portfolio Management (National Competence Baseline, NCB Version 4.0). T. 1. Project Management]. K. : Sammit-Kniga, 2017.178 p.

Kovalisko N. V. Osnovy socialjnoji stratyfikaciji [Establish a social stratika]. L.: Magnoliya, 2007. 328 p.

Labov W. The social stratification of English in New York City. London, United Kingdom: Cambridge University Press. 2006.

Shahov A. V., Bokareva M. O. Entropijnyj metod vybora tehnologicheskogo processa realizacii proekta [Entropy method of choosing the process of project implementation]. Visnyk nacionaljnogho tekhnichnogho universytetu «KhPI». Zbirnyk naukovykh pracj. Serija: Strateghichne upravlinnja, upravlinnja portfeljamy, proghramamy ta proektamy [Bulletin of NTU "KhPI". Series: Strategic management, portfolio, program and project management]. Kharkiv : NTU "KhPI", 2015, no. 1 (1110). pp. 29–33.

Zinko R. V. Morfologhichne seredovyshhe dlja modeljuvannja tekhnichnykh system [Morphological environment for modeling of technical systems]. Mizhvuzivskij zbirnik «Naukovi notatki» [Intercollegiate collection "Scientific Notes"]. 2012, no. 38. pp. 61–66.

Georg R. Vehicle modeling by subsystems. J. Braz. Soc. Mech. Sci&Eng. 2006, vol. 24, no. 4. pp. 430–442.

Lejda K., Zinko R. Economic appraisal of effectiveness of work of dismembered road trains. Systemy i srodki transportu samochodwego. Seria: Transport. Rzeszow: Politechnika Rzeszowska. 2011, no. 2, pp. 297–302.

Saveleva O.S., Stanovskij A. L., Stanovskaya I. I., Berezovskaya E. I., Heblov Ismail, Gurev I. N., Sauh I. A. Formalizaciya prostranstva upravleniya proektami [Formalization of project management space]. Visnik NTU "HPI". Zbirnik naukovih prac [Bulletin of the NTU "KhPI". Collection of scientific works]. Kharkiv : NTU "HPI", 2016, no. 42 (1214). pp. 154–159.

Lizunov P. P., Biloshickij A. A., Biloshickaya S. V. Proektno-vektornyj podhod k postroeniyu sistemy upravleniya vysshimi uchebnymi zavedeniyami [Design vector approach to building a university management system]. Upravlinnya rozvitkom skladnih sistem. Informatizaciya vishoyi osviti. KNUBA [Managing the development of complex systems. Informatization of Higher Education. KNUBA]. 2011, no. 6. pp. 135–139.

Pichler Roman. Agile Product Management with Scrum – Creating Products That Customers Love, Addison-Wesley Professional, 2010.

Scott Ambler. Going Beyond Scrum: Disciplined Agile Delivery. – 2013. Resources/Documents/BeyondScrum.pdf. Available at : https: // www.disciplinedagileconsortium.org/ (аccessed: February 4, 2014).

Sutherland Jeff. The Scrum Papers: Nut, Bolts, and Origins of an Agile Framework. Available at: www.Scruminc.com. (accessed on: April 2, 2012).

Shapiro V. D., Mazur I. I., Olderogge N. G. Upravlenie proektami [Project management]. M.: Omega-L, 2004.

Savyelyeva O. S., Stanovska I. I., Toropenko A. V., Berezovska K. I., Heblov I. Rozrobka termodinamichnih kognitivnih modelej proektnoyi diyalnosti [Development of thermodynamic cognitive models of project activity]. Visnik NTU «HPI» [Bulletin of NTU "KhPI"]. Kharkiv, 2015, no. 62(1171), pp. 89–93.

Teslya Yu. N. Primenenie modeli nesilovogo (informacionnogo) vzaimodejstviya i psevdofizicheskih logik k postroeniyu intelektualnyh sistem upravleniya proektami [Application of the model of non-force (information) interaction and pseudo-physical logics to the construction of intellectual project management systems]. Upravlinnya proektami ta rozvitok virobnictva: Zb. nauk. pr [Project Management and Production Development: Collection of Scientific Papers]. Lugansk: vid-vo SNU im. V. Dalya, 2004, no. 2(10). pp. 25–35.

Najdek V. L., Stanovskij A. L., Lysenko T.V. Mnogourovnevaya mnogokriterialnaya adaptivnaya sistema upravleniya nestacionarnymi vysokointensivnymi processami teplomassoperenosa v sisteme «otlivka – forma» [Multi-level multi-criteria adaptive control system for non-stationary high-intensity heat and mass transfer processes in the “casting-form” system]. Trudy Odesskogo politehnicheskogo universiteta [Works of Odessa Polytechnic University]. Specvypusk, 2005, pp. 91–94.

Itskov M. Tensor Algebra and Tensor Analysis for Engineers. With Applications to Continuum Mechanics. Springer. 2015. 290 p.

Xiujuan Zhang, Wu Ying. Effective medium theory for anisotropic metamaterials. Scientific Reports 5, Article number: 7892 (2015).

Published

2019-01-30

Issue

Section

Сборник научных статей