Information and conflict component of methodology of the technical regulation system in construction

Authors

DOI:

https://doi.org/10.15587/2313-8416.2019.160418

Keywords:

information model, information structure, scientific system, object-subjective interaction, systemic conflict

Abstract

The research of the information and conflict subsystem of the methodology of the technical regulation system is conducted, which allows to determine the specifics of the current state of the system and to evaluate the prospects of its development. It is shown that optimization of object-subjective interaction in the system of technical regulation with the subsequent reformation of the corresponding structures and redistribution of their functions can be considered through analysis of conflict situations. On the basis of conflict analysis, models of optimization of object-subjective interaction of the technical regulation system are proposed

Author Biography

Dmytro Isaienko, Confederation of Builders of Ukraine Bekhterevskyi lane., 4, Kyiv, Ukraine, 04053

PhD, Vice-President

References

Regulation (EU) No 305/2011 of the European Parliament and of the Council of 9 March 2011 laying down harmonised conditions for the marketing of construction products and repealing Council Directive 89/106/EEC Text with EEA relevance.

Plosky, V. O. (2011). System classification of MMP: concept and active use. Applied geometry and engineering graphics, 182–188.

Dobrov, G. M. (1970). Science of science: introduction to general science science. Kyiv: Scientific Opinion, 320.

Plosy, V. O. (2011). Principles of systemicity in applied geometry and ways of their implementation. Applied geometry and engineering graphics, 16–20.

Isaenko, D. V. (2019). Methodological principles of building the system of technical regulation in construction. American journal of Engineering Research, 8 (2), 225–234

Mykytas, M., Ploskyi, V. O. (2017). Sustainable urban development: state of research, international and Ukrainian experience. Energy Efficiency in Construction and Architecture, 9, 168–173.

Plosky, V. O. (2012). Theories in applied geometry: directions, genesis, perspectives. Applied geometry and engineering graphics, 90, 262–267.

Dobronravova, I. S. (1991). Nonlinear thinking. Philosophical and sociological thought, 6, 47–60.

Isaenko, D. V. (2019). Structure and features of the scientific methodology of construction of a system of technical regulation in construction. Science and construction: NIIBK, 1.

Isaenko, D. V., Plosky, V. O., Terhenchuk, S. A. (2018). Formation of the fuzzy knowledge base of decision support system for technical regulation of construction activity. Management of the development of complex systems, 35, 168–174.

Published

2019-04-08

Issue

Section

Technical Sciences