Study of the theoretical failure model of the NPM-69-M microelectronic block

  • Asadulla Azizov Tashkent State Transport University
  • Saidazim Ubaydullayev Tashkent State Transport University
  • Azamat Sadikov Tashkent State Transport University

Аннотация

The article addresses the question of studying the paired axis control model of a microelectronic block, obtaining the numerical value of the operational failure intensity (EIO) of a microelectronic block, studying the theoretical model of failures, obtaining the eio numerical values of a microelectronic block. One of the most dynamically developing industries in the modern world is mirkroprotssesor and microelectronic systems. Important when processing information resources and exchanging information between the device and users, these systems play an important role. The hardware supply structure of these systems is enriched by a new integrated circuit and equipment day by day, in exchange for the rapid development of semiconductor technology. These tools and systems are the main technical component of the activities of most small and medium-sized industrial enterprises, as well as large industrial sectors that use modern work organization solutions. The introduction of similar systems into practice in the railway industry, which is calculated from such large industries, does not remain without contributing to the development of the industry. In particular, the issue of replacing electromagnetic relays with microelectronic devices, which were commissioned in the 60s of the last century in most of the railway lines currently in use in our country in railway automation and telemechanics systems, is considered in this article. To address these issues, NPM-69-m studied and analyzed the failure rate of the block under investigation, as well as the rate of qisim failure, which is twice as high as similar indicators of other components of the NPM-69-m microelectron block.

Литература

[1] Сороко, В. И. Аппаратура железнодорожной автоматики и телемеханики : справ. : в 2 кн., Кн. 2. – 3-е изд. / В.И. Сороко, Е.Н. Розенберг– М. : НПФ «Планета», 2000. – 1008 с.
[2] Azizov A. R., Ubaydullayev S. Q., Ametova E. K. Model of push-button relay circuits for shunting routes //AIP Conference Proceedings. – AIP Publishing, 2023. – Т. 2612. – №. 1.
[3] Model of Circuits of Anti-repeat Relays of Train Routes Yusupov, Z., Azizov, A., Ametova, E., Ubaydullaev, S. Lecture Notes in Networks and Systems, 2024, 718 LNNS, страницы 161–168.
[4] Каменев А. Ю. Особенности применения экспериментальных методов доказательства безопасности систем микропроцессорной централизации стрелок и сигналов / А. Ю. Каменев // Информационно-управляющие системы на железнодорожном транспорте. 2011. – № 4. – С. 104–111. – ISSN 1681-4886.
[5] Азизов А.Р., Аметова Э.К. Метод математического моделирования организационно-технологической системы диагностирования микропроцессорных блоков наборной группы железнодорожной автоматики и телемеханики //Известия Транссиба. 2023. № 1 (53). С. 36-45.
[6] Бестемьянов П.Ф. Методы повышения безопасности микропроцессорных систем интервального регулирования движения поездов. Докторская диссертация, Москва, 2001, 324с.
[7] Aripov N., Sadikov A., Ubaydullayev S. Intelligent signal detectors with random moment of appearance in rail lines monitoring systems //E3S Web of Conferences. – EDP Sciences, 2021. – Т. 264. – С. 05039.
[8] A.Azizov. Microelectronic device for control of rail line integrity in Uzbekistan. E3S Web of Conferences, 2024, 583, 07007.
[9] Каменев А. Ю. Особенности применения экспериментальных методов доказательства безопасности систем микропроцессорной централизации стрелок и сигналов / А. Ю. Каменев // Информационно-управляющие системы на железнодорожном транспорте. –2011. – № 4. – С. 104–111. – ISSN 1681-4886.
[10] Azizov A. et al. Development, research of a model and an algorithm for organizing data transfer in a monitoring device //E3S Web of Conferences. – EDP Sciences, 2023. – Т. 371. – С. 03069.
[11] E. Ametova. Framework development for software functionality in Uzbekistan’s block route centralization system. E3S Web of Conferences, 2024, 592, 07017.
[12] Азизов А.Р., Убайдуллаев С.Қ., Микропроцессорное устройство наборного блока управления светофорами на станция. Муҳаммад ал-Хоразмий авлодлари. Муҳаммад ал-Хоразмий номидаги Тошкент ахборот технологиялари университети 2023, №4 (26) 116-122 б.
Опубликован
2025-06-30
Как цитировать
Azizov, A., Ubaydullayev, S., & Sadikov, A. (2025). Study of the theoretical failure model of the NPM-69-M microelectronic block. Международный научный журнал «Инженер», 3(2), 48-51. https://doi.org/10.56143/3030-3893-2025-2-48-51
Раздел
Электротехника и электроника