Mathematical model of data conversion in printing system

Authors

  • Валерий Павлович Авраменко Kharkiv National University of Radio Electronics Lenina 14, Kharkov, Ukraine, 61166, Ukraine
  • Антон Константинович Парамонов Kharkiv National University of Radio Electronics Lenina 14, Kharkov, Ukraine, 61166, Ukraine

DOI:

https://doi.org/10.15587/1729-4061.2013.16329

Keywords:

mathematical model, information flow, data conversion, printing system

Abstract

Today printing industry witnesses such trends as rapid growth of the products quality and transition from specialized systems to universal, releasing various printing and multimedia products.

It leads to significant increase of the processed data and substantial change in the structure of information flow in printing systems. As a result, the existing mathematical models of data conversion do not fully correspond to the actual processes.

The paper analyzes the information flow of preprinting production stage of the modern printing system. The unified flow has been singled out, for which, using statistical and regression analysis, the adequate mathematical model has been developed. The model has been adapted for simulation in general-purpose computing environments.

The obtained results can be used for the data conversion simulation in the printing system, for designing efficient and reliable computing networks, and for workflows optimization at the printing companies

Author Biographies

Валерий Павлович Авраменко, Kharkiv National University of Radio Electronics Lenina 14, Kharkov, Ukraine, 61166

Professor

Department of Media Systems and Technology

Антон Константинович Парамонов, Kharkiv National University of Radio Electronics Lenina 14, Kharkov, Ukraine, 61166

The post-graduate student

Department of Media Systems and Technology

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Published

2013-08-14

How to Cite

Авраменко, В. П., & Парамонов, А. К. (2013). Mathematical model of data conversion in printing system. Eastern-European Journal of Enterprise Technologies, 4(4(64), 4–8. https://doi.org/10.15587/1729-4061.2013.16329

Issue

Section

Mathematics and Cybernetics - applied aspects