INFORMATION SYSTEMS AND LOGISTICS IN CIVIL ENGINEERING

MULTI-COMPONENT ANALYSIS AND INFOGRAPHIC MODELINGOF THE ENERGY SECURITY OF THE MAN-MACHINERY-ENVIRONMENT SYSTEM

Vestnik MGSU 1/2013
  • Volkov Andrey Anatol'evich - Moscow State University of Civil Engineering (MGSU) Doctor of Technical Sciences, Professor, Vice Rector for Information and Information Technologies, Chair, Department of Information Systems, Technology and Automation in Civil Engineering, Moscow State University of Civil Engineering (MGSU), 26 Yaroslavskoe shosse, Moscow, 129337, Russian Federation; This e-mail address is being protected from spambots. You need JavaScript enabled to view it .
  • Rakhmonov Emomali Karimovich - Moscow State University of Civil Engineering (MGSU) Candidate of Technical Sciences, doctoral stu- dent, Department of Information Systems, Technology and Automation in Civil Engineering, Moscow State University of Civil Engineering (MGSU), 26 Yaroslavskoe shosse, Moscow,129337, Russian Federation; This e-mail address is being protected from spambots. You need JavaScript enabled to view it .

Pages 201-207

In this article, the authors employ the infographic model of the man-machinery-environment system to analyze the secure operation of the system and its components from the viewpoint of the energy security. The research project contemplates the multi-component analysis of the man-machineryenvironment system represented as an infographic model, as well as the analysis of operation of systems that is safe from the viewpoint of energy and its supply. The basic subject of research represents the man-machineryenvironment system that is composed of individual components of the triad (or monads, including humans, machinery and the environment) and their paired combinations (or dyads, including humans and machinery, machinery and the environment, humans and the environment) as the local research facilities considered from the viewpoint of design of an energy efficient system.The overall objective of the research is to study basic rules and regularities of design of infographic models, their relationships and interactions to avoid conflicts and to prognosticate hazardous consequences in terms of the energy security of the system as a whole. As a result, the authors have systematized elementary infographic models within the framework of the conflict management theory.

DOI: 10.22227/1997-0935.2013.1.201-207

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