APPLIED RESEARCH ASPECTS OF INTELLECTUAL PROCESS BASED ON THE CRITERIA OF RELIABILITY

Authors

  • M.V. Khodak Kharkiv National University of Radio Electronics, Kharkiv, Ukraine, Ukraine
  • Ye. I. Kucherenko Kharkiv National University of Radio Electronics, Kharkiv, Ukraine, Ukraine
  • S. N. Trokhymchuk Ukrainian Engineering and Pedagogical Academy, Kharkiv, Ukraine, Ukraine

DOI:

https://doi.org/10.15588/1607-3274-2017-1-8

Keywords:

temperature control, reliability, UML-graph density.

Abstract

Сontext. The complexity and ambiguity of the approach to the system of thermoregulation, makes it possible to meet most of the enduser
requirements. Such problems are solved by creating a flexible software to manage temperature control systems. The main functional
requirement for them is determined by the condition of thermal comfort: maintain the desired optimum temperature within the permissible limits of its rejection. Similar systems operate in conditions of uncertainty. In the course of such tasks proposed and considered a model based on fuzzy logic.
Objective. Simulation of fuzzy process E-net for a sustainable mechanism to conflict situations. To improve system performance, you
must evaluate the processes of device reliability.
Method. A new method for the study of intellectual processes based on the criteria of reliability. This method is based on the expansion
E-net that can reveal internal and external uncertainty in the system.
Objective. Made meaningful analysis of the existing thermal control systems. The simulation of the adequacy of the system of processes,
based on the consistency of properties, completeness, reliability, choice and alternatives simulated processes. Also analyzed the distributed heat supply facilities based on their clustering features of the density distribution.

Conclusions. Obtained scientific and practical significance of results that minimize computational costs, improve the accuracy in

decision-making, as well as more detailed further maintenance of complex industrial systems.

 

References

Технические характеристики терморегулятора РТГ-32 [Электронний ресурс]. – Режим доступа http://www.twirpx.com/file/ 1991080/ 2. ПИД-регулятор с универсальным входом и интерфейсом RS-485 ОВЕН ТРМ101 [Электронний ресурс]. – Режим доступа http://termokip.com.ua/uploads/RegTemeprature/Owen/trm101.pdf 3. Регулятор температуры AVTB (PN16) [Электронний ресурс]. – Режим доступа http://www.amity-group.org/docs/danfoss/ 04_avtb.pdf 4. Характеристика кожухо-трубных и пластинчатых теплообменников [Электронний ресурс]. – Режим доступа http://www.twirpx.com/file/1991082/ 5. Кучеренко Е. И. Знание-ориентированные интеллектуальные методы принятия решений в условиях неопределенности / Е. И. Кучеренко, М. В. Ходак // Радіоелектроніка, інформатика, управліния. – 2015. – № 4(35). – С. 45–51. 6. Бодянский Е. В. Нейро-фаззи сети Петри в задачах моделирования сложных систем (монография – научное издание) / Е. В. Бодянский, Е. И. Кучеренко, А. И. Михалев. – Дніпропетровськ : Системні технології, 2005.– 311 с. 7. Широков А.М. Надежность радиоэлектронных устройств / А. М. Широков. – М. : Высшая школа, 1972. – 267 с. 8. Cluster Analysis/ [B. Everitt, S. Landau, M. Leese, D. Stahl]. – John Wiley &Sons Ltd, 2011. – 330 p. 9. Кучеренко Е. И. Нечеткое разбиение объектов на основе критериев плотности / Е. И. Кучеренко, С. А. Глушенков, И. С. Глушенкова // Радіоелектроніка, інформатика, управління. – 2016. – № 1. – С. 32–39. 10. Ballard P. JavaScript in 24 Hours / P. Ballard. – Indiana, SAMS, 2015. – 416p. 11. Закас Н. Professional JavaScript for Web Developers / Н. Закас. – М. : Питер, 2015. – 960 с.

How to Cite

Khodak, M., Kucherenko, Y. I., & Trokhymchuk, S. N. (2017). APPLIED RESEARCH ASPECTS OF INTELLECTUAL PROCESS BASED ON THE CRITERIA OF RELIABILITY. Radio Electronics, Computer Science, Control, (1). https://doi.org/10.15588/1607-3274-2017-1-8

Issue

Section

Neuroinformatics and intelligent systems