Scientific and technical journal

«Automation and Informatization of the fuel and energy complex»

ISSN 0132-2222

Automation and Informatization of the fuel and energy complex
Testing of an automated system for gas pipelines technical diagnostics using unmanned aerial vehicles

UDC: 681.5:622.279
DOI: 10.33285/2782-604X-2023-3(596)-38-44

Authors:

GOLDZON IGOR A.1,
ZAVYALOV ALEXEY P.1,
LOPATIN ALEXEY S.1

1 National University of Oil and Gas "Gubkin University", Moscow, Russia

Keywords: main gas pipeline, reliability, diagnostics, unmanned aerial vehicle, aerial photography, geodynamic monitoring

Annotation:

The use of unmanned aerial vehicles is one of the most promising directions in the territorial-extended objects diagnosing. The article presents and analyzes the results of testing the technology for monitoring the technical state of the linear part of the main gas pipeline using unmanned aerial vehicles. It is shown that such a control technology has significant advantages over the applied methods, allowing to promptly control the technical state and high-altitude relief of gas pipeline sections as well as to identify areas characterized by increased technogenic and geodynamic hazards.

Bibliography:

1. Formirovanie edinoy otraslevoy sistemy diagnosticheskogo obsluzhivaniya (OSDO) RAO "GAZPROM" / V.V. Remizov, A.D. Sedykh, S.P. Zaritskiy [i dr.] // Diagnostika oborudovaniya i truboprovodov. – 1996. – № 4-6. – S. 7–22.
2. Primenenie risk-orientirovannogo podkhoda k otsenke neobkhodimosti i tselesoobraznosti ustanovki sistem monitoringa tekhnicheskogo sostoyaniya gazoprovodov / V.I. Borodin, R.E. Shepelev, D.M. Lyapichev [i dr.] // Gazovaya prom-st'. – 2018. – № 1(763). – S. 60–63.
3. Zhitomirskiy B.L., Lyapichev D.M. Perspektivnye napravleniya razvitiya sistemy diagnosticheskogo obsluzhivaniya gazotransportnogo oborudovaniya kompressornykh stantsiy // Oborudovanie i tekhnologii dlya neftegazovogo kompleksa. – 2020. – № 1(115). – S. 56–58. – DOI: 10.33285/1999-6934-2020-1(115)-56-58
4. Gol'dzon I.A., Zav'yalov A.P., Lopatin A.S. O perspektivakh ispol'zovaniya sistem avtomatizirovannogo kontrolya tekhnicheskogo sostoyaniya oborudovaniya ob"ektov TEK s ispol'zovaniem bespilotnykh tekhnologiy // Avtomatizatsiya, telemekhanizatsiya i svyaz' v neftyanoy promyshlennosti. – 2019. – № 6(551). – S. 25–30. – DOI: 10.33285/0132-2222-2019-6(551)-25-30
5. Prokhorov A.V., Noskov I.V. Monitoring magistral'nykh neftegazoprovodov pri pomoshchi bespilotnykh letatel'nykh apparatov // Vestn. evraziyskoy nauki. – 2022. – T. 14, № 6. – URL: https://esj.today/PDF/40NZVN622.pdf
6. Zaderigolova M.M., Pivovarchik A.N., Len N.V. Primenenie radiovolnovogo metoda vozdushnogo bazirovaniya dlya diagnostirovaniya sostoyaniya sistemy truba – grunt v zonakh prirodno-tekhnogennykh riskov // Oborudovanie i tekhnologii dlya neftegazovogo kompleksa. – 2023. – № 1(133). – S. 68–74. – DOI: 10.33285/1999-6934-2023-1(133)-68-74
7. Bespilotnaya aviatsiya: terminologiya, klassifikatsiya, sovremennoe sostoyanie: nauch. izd. / V.S. Fetisov, L.M. Neugodnikova, V.V. Adamovskiy, R.A. Krasnoperov. – Ufa: FOTON, 2014. – 217 s.
8. Guseynov K.B., Zaderigolova M.M., Lopatin A.S. Geodinamicheskiy monitoring magistral'nykh gazoprovodov s ispol'zovaniem bespilotnykh letatel'nykh apparatov // Tr. RGU nefti i gaza im. I.M. Gubkina. – 2016. – № 1(282). – S. 80–88.
9. Lyapichev D.M., Lopatin A.S. Monitoring tekhnicheskogo sostoyaniya gazoprovodov: ucheb. posobie. – M.: RGU nefti i gaza (NIU) im. I.M. Gubkina, 2021. – 216 s.
10. Nikulina D.P., Lyapichev D.M. Metodicheskie podkhody k optimizatsii sistem monitoringa tekhnicheskogo sostoyaniya slozhnykh ob"ektov // Oborudovanie i tekhnologii dlya neftegazovogo kompleksa. – 2022. – № 4(130). – S. 59–63. – DOI: 10.33285/1999-6934-2022-4(130)-59-63
11. Lopatin A.S., Sukhoverkhov Yu.N., Korolenok A.M. NOTs "Energosberegayushchie tekhnologii i tekhnicheskaya diagnostika" // Neft', gaz i biznes. – 2015. – № 3. – S. 30–33.
12. Sukhoverkhov Yu.N., Chernyad'ev S.A. Razvitie nauchno-obrazovatel'nogo tsentra "Energosberegayushchie tekhnologii i tekhnicheskaya diagnostika" // Energosberegayushchie tekhnologii i tekhnicheskaya diagnostika: sb. nauch. tr. – M.: RGU nefti i gaza (NIU) im. I.M. Gubkina, 2016. – Vyp. 1. – S. 5–13.
13. Sukhoverkhov Yu.N., Savitskiy A.V., Slautin P.S. Opyt prakticheskogo primeneniya innovatsionnykh razrabotok v NOTs "Energosberegayushchie tekhnologii i tekhnicheskaya diagnostika" // Energosberegayushchie tekhnologii i tekhnicheskaya diagnostika: sb. nauch. tr. – M.: RGU nefti i gaza (NIU) im. I.M. Gubkina, 2016. – Vyp. 1. – S. 118–126.
14. Improving the accuracy of estimates of the pulse sequence period using the methodology of complete sufficient statistics / K.N. Zhuchkov, M. Vasilchenko, A.D. Zagrebneva, A.P. Zavyalov // Scientific Reports. – 2022. – Vol. 12, No. 1. – P. 19932. – DOI: 10.1038/s41598-022-24457-2
15. Vasilchenko M., Zavyalov A.P., Zhuchkov K.N. Increasing the Stability of a Spatially Distributed Information System using a Robust Algorithm for Filtering Anomalous Measurements // Information Technology in Industry. – 2020. – Vol. 8, No. 3. – P. 1–7.