PEREGONDAGI HARAKATNI BOSHQARISH TIZIMLARINI MIKROPROTSESSORLI TEXNOLOGIYALAR ASOSIDA TAKOMILLASHTIRILGAN TUZILMAVIY SXEMASINI ISHLAB CHIQISH
DOI:
https://doi.org/10.5281/zenodo.20073872Ключевые слова:
mikroprotsessorli yarim avtomatik blokirovka, temir yo‘l transporti, poyezdlar harakatini boshqarish, dasturlanuvchi mantiqiy kontroller, o‘qlarni sanash tizimi, optik tolali aloqa liniyasi, harakat xavfsizligi, avtomatlashtirish, raqamli aloqa, ekspluatatsion samaradorlikАннотация
Mazkur maqolada temir yo‘l transportida peregonlarda poyezdlar harakatini boshqarish tizimlarini mikroprotsessorli
texnologiyalar asosida takomillashtirish masalalari yoritilgan. Unda an’anaviy releli yarim avtomatik blokirovka
tizimlarining asosiy xususiyatlari — energiya sarfi, xizmat ko‘rsatish jarayonlari hamda funksional imkoniyatlari tahlil qilingan.
Shu asosda mikroprotsessorli yarim avtomatik blokirovka tizimining tuzilmaviy va funksional sxemasi ishlab chiqilib,
dasturlanuvchi mantiqiy kontrollerlar, o‘qlarni sanash sensorlari hamda optik tolali aloqa vositalaridan foydalanish orqali
tizimning ishonchliligi va samaradorligini oshirish imkoniyatlari asoslab berilgan.
Taklif etilgan yechim poyezdlar harakati xavfsizligini yanada mustahkamlash, inson omili ta’sirini kamaytirish, axborot
almashinuvi tezligini oshirish hamda ekspluatatsion xarajatlarni optimallashtirishga xizmat qiladi.
Библиографические ссылки
O‘zbekiston Respublikasi Prezidentining temir yo‘l transportini rivojlantirishga oid qarorlari va normativ-huquqiy
hujjatlari. – Toshkent, 2019–2023.
Kurbanov, J. F., Yaronova, N. V., & Khujamkulov, E. G. (2023). Improvement of the control relay blocks in the electrical
centralization and control system based on modern elements. In: 2023 International Russian Automation Conference
(RusAutoCon), Sochi, Russian Federation, pp. 988–992. https://doi.org/10.1109/RusAutoCon58002.2023.10272730
Sapojnikov, V. V., Sapojnikov, V. L., & Shamanov, V. I. (2003). Nadezhnost sistem zheleznodorozhnoy avtomatiki,
telemekhaniki i svyazi. Moscow: Marshrut.
Siemens AG. (2021). SIMATIC S7-1200 Programmable Controller System Manual. Germany.
O‘zbekiston temir yo‘llari AJ. (2020). Temir yo‘l avtomatika va telemexanika qurilmalarini ekspluatatsiya qilish bo‘yicha
yo‘riqnoma. Toshkent.
Dmitrenko, I. E., Ustinskiy, A. A., & Tsygankov, V. I. (1975). Izmereniya v ustroystvakh avtomatiki, telemekhaniki i
svyazi na zheleznodorozhnom transporte. Moscow: Transport.
Ustroystva SSB. Tekhnologiya obsluzhivaniya. (1999). Moscow: Transport.
Frauscher Sensor Technology. (2020). Axle Counter Systems: Technical Description. Austria.
Efanov, D., Lykov, A., & Osadchy, G. (2017). Testing of relay-contact circuits of railway signalling and interlocking.
In: Proceedings of IEEE East-West Design and Test Symposium (EWDTS 2017). https://doi.org/10.1109/
EWDTS.2017.8110095
Sapojnikov, V. L. (2003). Tekhnicheskaya ekspluatatsiya ustroystv i sistem zheleznodorozhnoy avtomatiki i
telemekhaniki. Moscow: Marshrut.
Arxipov, E. V., & Gurevich, V. N. (2000). Spravochnik elektromontera SSB. Moscow: Transport.
Shamanov, V. I. (2013). Electromagnetic compatibility of railway automation and telemechanics systems. Moscow:
UMTS.
Naghiyev, A., Sharples, S., Ryan, B., Coplestone, A., & Carey, M. (2019). Rail control and automation technology:
Transitions within the European Rail Traffic Management System. In: Contemporary Ergonomics and Human Factors
London: CIEHF, pp. 2156–2161.
Загрузки
Опубликован
Выпуск
Раздел
Лицензия
Copyright (c) 2026 MUHANDISLIK VA IQTISODIYOT

Это произведение доступно по лицензии Creative Commons «Attribution» («Атрибуция») 4.0 Всемирная.