THE DEVELOPED RESOURCE DEFINITION OF GAS-INSULATED SWITCH TYPE H G F 100/2 B, C GEC ALSTHOM FOR A FUZZY MODEL
DOI:
https://doi.org/10.15588/1607-6761-2016-2-8Keywords:
gas-insulated switch, the fuzzy model developed resource, technical condition, expert surveyAbstract
The purpose of the work is the development of fuzzy model gas-insulated switch type HGF 100/2 B,C GEC ALSTHOM to determine the total mined-out resource.
Research methods. The study was conducted through expert interviews, that became the basis for the construction of the fuzzy model of gas-insulated circuit breaker to determine the total mined-out resource. This model is implemented in MATLAB Fuzzy Logic Toolbox using the mathematical apparatus of fuzzy sets and fuzzy logic.
The obtained results. The authors developed the fuzzy model which obtained the numerical value of the total resource developed gas-insulated circuit breaker with the influence of aggregate factors such as the condition of mechanical and switching systems, the state of arc suppression medium and isolation.
Scientific novelty.The authors developed the new fuzzy model of gas-insulated circuit breaker to determine the total developed resource, which uses the information available for measurement or observation.
Practical significance. This model is used for gas-insulated switch type GEC ALSTHOM HGF 100/2C operated on the Dnipro HPS-1, ODD-330 kV, cell L -211/1. The developed fuzzy model of assessment of the gas-insulated switch technical condition can be applied to all switches of this type.
References
Абдурахманов А. М. Влияние продолжительности эксплуатации на отказы выключателей в высоковольтных электрических сетях / А. М. Абдурахманов, М. Ш. Мисриханов, А. В. Шунтов // Электрические станции. 2007. №7.–.С. 59–63.
Абдурахманов А. М. Об особенностях структуры параметра потока отказов выключателя / А. М. Абдурахманов, М. Ш. Мисриханов, Б. Н. Неклепаев // Электрические станции. 2005. №5.–.С. 54–57.
Літвінов В. В. Оцінка ризику порушення стійкості двигунового навантаження при відмовах електрообладнання в підсистемі ЕЕС : дис. на здобуття наук. ступеня канд. техн. наук : (05.14.02 – електричні станції, мережі та системи) / Літвінов В. В.; МОНМС України, НТУУ «КПІ». – К., 2012. – С. 26–29.
Костерєв М. В. Питання побудови нечітких моделей оцінки технічного стану об’єктів електричних систем / М. В. Костерєв, Є. І. Бардік. – К.: НТУУ «КПІ», 2010. – 131 с.
Штовба С. Д. Проектирование нечетких систем средствами MATLAB / С. Д. Штовба. – М.: Горячая линия – телеком, 2007. – 288 с.
Саати Т. Принятие решений. Метод анализа иерархий / Т. Саати – М.: Радио и связь, 1993. – 278 с.
Ременников В. Б. Управленческие решения / В. Б. Ременников. Минск:Юнити, 2005. – 144 с. 8. Леоненков А. В. Нечеткое моделирование в среде MATLAB и FuzzyTECH/ А. В. Леоненков. – СпБ.: БХВ – Петербург, 2005. – 736 с.
Downloads
How to Cite
Issue
Section
License
Copyright (c) 2017 S. V. Domoroshchyn, P. V. Makhlin
This work is licensed under a Creative Commons Attribution 4.0 International License.
Creative Commons Licensing Notifications in the Copyright Notices
Authors who publish with this journal agree to the following terms:
Authors retain copyright and grant the journal right of first publication with the work simultaneously licensed under aCreative Commons Attribution License that allows others to share the work with an acknowledgement of the work's authorship and initial publication in this journal.
Authors are able to enter into separate, additional contractual arrangements for the non-exclusive distribution of the journal's published version of the work (e.g., post it to an institutional repository or publish it in a book), with an acknowledgement of its initial publication in this journal.
Authors are permitted and encouraged to post their work online (e.g., in institutional repositories or on their website) prior to and during the submission process, as it can lead to productive exchanges, as well as earlier and greater citation of published work.