DETERMINATION OF THE QUANTITY OF INFORMATION FLOWS IN THE TELECOMMUNICATION NETWORKS MANAGEMENT SYSTEM WITH REGARD TO CORRELATION CONNECTIONS

Abstract

Issues related to the improvement of the quality of the telecommunications network management system and the main criteria of the functioning of the telecommunication network management system are considered in the article. Design of a rational version of the system involves the choice of a large and heterogeneous set of parameters ‒ types and models of equipment, which complicates the formation of analytical model of management system. One of the important parameters is the bandwidth of the management system, which depends on the amount of control information. Change in the status of a network element which is a component of a network may cause corresponding changes in different locations and at different network levels. A refusal can spread and affect various network-level services. Switching to a non-operating state of one network element or even one or more parameters of a network element leads to the generation of a large number of emergency messages of different types and different formats transmitted from different locations. The management system should provide the automatic data collection depending on their correlation, based not only on the description of the state and behavior of the controlled components, but also on the explicit description of the state and behavior of the relationship between these components. The method of determination the necessary amount of management information based on correlation connections between the states of network elements is proposed. The method of calculating the amount of information developed on the basis of information theory allows to minimize the amount of information management flows and to calculate the number of communication channels for a control system with a given bandwidth provided in accordance with the Recommendations ITU-T M.3100, M3.400.

Authors and Affiliations

Liubov Berkman, Oksana Varfolomeieva, Mykola Tverdokhlib, Natalia Perepelytsia

Keywords

Related Articles

INFORMATION TECHNOLOGY OF MULTIDIMENSIONAL CHEBYSHEV APPROXIMATION TO SPECIFIED QUALITY FUNCTION VALUES OF THE PRODUCTION PROCESS

In article, attention is directed to the stage of developing QFD product quality. For set multidimensional values of the quality function (in accordance with the standard), the problem arises of determining the values of...

Method zero-knowledge identification of remote users.

. In article the new method for implementation of theoretical strong identification of remote abonents or tample-resistant devices of multiuser systems, based on zero-knowledge conception is presented. The need for eff...

SYNTHESIS OF THE MATHEMATICAL MODEL OF INFORMATION DISTRIBUTION FOR MINIMIZING THE DELAY OF DATA IN THE SATELLITE SYSTEM

The paper proposes a mathematical model for the distribution of information flows, which searches for paths of minimal weight and allows to minimize the average delay of a data packet in satellite cluster multifunctional...

DEFASIFICATION IN INFORMATIONAL TECHNOLOGIES OF FUZZY CONTROL ON THE BASIS OF MEMBERSHIP FUNCTIONS OF SEVERAL ARGUMENTS

Using the information technologies for the fuzzy control of complex systems with depended characteristics and restrictions on control variables requires the applying of fuzzy logic with the membership functions of severa...

INCREASE IN ENERGY EFFICIENCY OF MILLIMETRES SYSTEMS BY THE METHOD OF CHANNEL GAIN DUE TO DIFFRACTION AND REFLECTION

The paper analyses the millimetre-wave channel budget model, taking into account the radiation characteristics of a narrow-beam antenna. The proposed multi-beam model takes into account the overall gain and the millimetr...

Download PDF file
  • EP ID EP479912
  • DOI -
  • Views 96
  • Downloads 0

How To Cite

Liubov Berkman, Oksana Varfolomeieva, Mykola Tverdokhlib, Natalia Perepelytsia (2018). DETERMINATION OF THE QUANTITY OF INFORMATION FLOWS IN THE TELECOMMUNICATION NETWORKS MANAGEMENT SYSTEM WITH REGARD TO CORRELATION CONNECTIONS. Телекомунікаційні та інформаційні технології, 103(3), 5-11. https://europub.co.uk./articles/-A-479912