METHOD OF ASSESSMENT OF INFORMATION AND CONTROL DECISION SUPPORT SYSTEMS OF THE PRODUCTS FOR VIRTUAL INSTRUMENT-MAKING ENTERPRISE BASED ON THE SPIRAL MODEL OF THE PRODUCT LIFE CYCLE

Andrii Sobchak, Igor Shostak, Olga Popova

Abstract


In the article it is reviewed and modified a method of product life cycle assessment (LCA) with the help of a new stage ­ "market monitoring", which allows at the stage of strategic planning to identify priorities for product release and production technology design. It is also found that the use of OLAP technology enables to visualize not only the stages of "start-release", but also to assess the necessity of termination of further production, using a developed spiral model of product life cycle assessment for virtual instrument-making enterprises. The developed model have shown that when reaching break-even point it should be the right way to conduct strategic planning, modernize the product in accordance with the consumer needs and give the product a new round or complete the project. Development of such models helps to ensure that the product life cycle for virtual instrument-making enterprises can stretch to infinity.


Keywords


product life cycle (LC); virtual enterprise; life cycle assessment (LCA); OLAP (online analytical processing); spiral model

Full Text:

PDF

References


Maracas, G. M. (1999). Decision support systems in the twenty-first century. Upper Saddle River, New Jersey: Prentice Hall, 529.

Logunov, V. V. (2002). Enterprise engineering process management adaptation to changes in the market environment. Eagle, 205.

Berger, A. et al. (2007). Microsoft SQL Server 2005 Analysis Services. OLAP i mnogomernyi analiz dannykh [Microsoft SQL Server 2005 Analysis Services. OLAP and multidimensional data analysis]. Saint Petersburg: BKhV-Peterburg, 928.

Remennik, V. V. (2000). Development of managerial decisions. Moscow: UNITY, 140.

Feinberg, A. (1976). Problems of analysis and decision-making procedures. Moscow: Mir, 126–145.

Abdrahimov, D., Ioffin, A. Universal information-analytical system (IAS) decision support "for evaluating and selecting". Razrabotchyky YAS “Ocenka y vyybor”. Available at: http://www.deol.ru/users/DecisionSupporter/projects/iasctc.html

The Ministry of Industrial Policy is drafting engineering development for (2012-2017). BAU.ua. Available at: http://news.bau.ua.

Statistichnі dannі promislovostі Ukraine. Derzhstat Ukrai'ny. Available at: http://www.ukrstat.gov.ua

Hrustalev, E. M. Aggregation of data in OLAP-cubes. Analytical systems.

Hrustalev, E. M. Information technology. iTeam. Available: http://www.iteam.ru/publications/it/section_92/article_1759.

Mark, D., McGowan, K. (1993). Methodology of structural analysis and design. Moscow: Meta.

Schekochikhin, O. V., Shvedenko, V. V. (2006). Simulation management solutions in an object-functional business management system. Izvestiya of the Tula State University. Tula: TSU, 117–123.

Saaty, T. L. (1986). Axiomatic Foundation of the Analytic Hierarchy Process. Management Science,Vol. 32, № 7, 841–855. doi:http://doi.org/10.1287/mnsc.32.7.841




DOI: http://dx.doi.org/10.21303/2461-4262.2016.00057

Refbacks

  • There are currently no refbacks.




Copyright (c) 2016 Andrii Sobchak, Igor Shostak, Olga Popova

Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 International License.

ISSN 2461-4262 (Online), ISSN 2461-4254 (Print)