Organization of knowledge bases in multicomponent optical information networks

Authors

  • V.I. Malinovsky Vinnytsia National Technical University

DOI:

https://doi.org/10.31649/1681-7893-2018-35-1-93-97

Keywords:

Multicomponent optical information networks, Big Data, fiber-optic network, 5NGi Internet, artificial intelligence, GRID, architecture

Abstract

In article was consider the latest approaches to using the moder up to date technologies in the organization of knowledge bases witch basis on modern information data base technologies (POSTGRESQL, MONGO {DB}) focused on working with Big Data in multicomponent fiber optic information networks (MCFON). The proposed approaches and architecture can be used to create new generation optical distributed networks (such GRID architecture) using high-speed channels (Fiber Optical 5NGi Internet) and parallel GRID based architectural with artificial intelligence algorithms (AIs).

Author Biography

V.I. Malinovsky, Vinnytsia National Technical University

доцент, к.т.н. кафедри лазерної та оптоелектронної техніки

References

E. Lach, W. Idler (2011) Modulation formats for 100G and beyond. Optical Fiber Technology, 17, 377-386.

Y.K.Shah et. al. (2014). Formation and Design Considerations of Grid Architecture. Int. J Comp Sci. Emerging Tech, 5, 169-176.

Worldwide LHC Computing Grid. (2016). http://wlcg.web.cern.ch/ Accessed 30 November 2016.

Ubaydulayev R. R. (1998) Fiber optic networks. Moscow: Eco-Trentz.

V.P. Kozhemyako, O.G. Dombrovsky, I.D. Ivasyuk, O.V. Shevchenko, S.V. Dusanyuk, S.S. Bilan, A.V. Kozhemyako. (2005) Optical-electronic geoinformation system of total testing and optimal management of scientific and educational and library resources for the creation and development of a centralized knowledge base. Opto-electronic information and energy technologies, 1 (9), 5-10.

V.P. Kozhemyako, Malinovsky V.I. (2007). Structural organization of channels for fully optical information and power networks. Measuring and computing engineering in technological processes, 2, 37-42.

Kozhemyako V.P., Bilan S.S., Kozhemyako O.V., Kozhemyako A.V. (2004). Optical-electronic geoinformation-energy system as a global means of harmonious solving of problems of development of civilization. Optical -electronic information and energy technologies, 2 (8), 5-10.

V.G.Olifer, N.A.Olifer. (1999). Computer networks. Principles, Technologies, Protocols. St. Petersburg: Publishing House "Peter".

Downloads

Abstract views: 208

Published

2019-06-14

How to Cite

[1]
V. Malinovsky, “Organization of knowledge bases in multicomponent optical information networks”, Опт-ел. інф-енерг. техн., vol. 35, no. 1, pp. 93–97, Jun. 2019.

Issue

Section

Fiber-Optical Technologies for Information (Internet, Intranet etc.) and Energy Networks

Metrics

Downloads

Download data is not yet available.