STATUS MONITORING FOR NODES OF AUTOMATED PROCESS PRODUCTION SYSTEMS OF CONTINUOUS TYPE Russian patent published in 2016 - IPC G07C3/14 G06N3/02 G05B13/04 

Abstract RU 2580786 C2

FIELD: oil and gas industry.

SUBSTANCE: method consists in assessment of status parameters for process nodes with formation of the current situation image, selection of basic control parameters for status and formation of neural network approximations for transfer functions of basic control parameters for status with additional control parameters for status, verification of values of approximation coefficients formed using neural network models for the respective parts of the transfer functions. As basic control parameters for status of the process nodes the parameters are selected as they are formed by the node status control channels with values of confidence/non-confidence degree index in regard to measurements is higher than the preset value.

EFFECT: simplification and automation of procedures for production nodes control with expansion of the set of controlled parameters for production nodes status, improved accuracy of calibration for status parameters measurement channels, support of decisions on rejection of contingent situations.

4 cl, 13 dwg, 6 tbl

Similar patents RU2580786C2

Title Year Author Number
METHOD FOR DETERMINING AN ANOMALY IN A CYBER-PHYSICAL SYSTEM 2022
  • Lavrentev Andrei Borisovich
  • Mamaev Maksim Aleksandrovich
  • Vorontsov Artem Mikhailovich
  • Nechiporuk Artem Mikhailovich
  • Travov Aleksandr Viktorovich
  • Shkulev Viacheslav Igorevich
  • Ivanov Dmitrii Aleksandrovich
  • Demidov Nikolai Nikolaevich
RU2790331C1
METHOD FOR REMOTE CONTROL OF INDUSTRIAL SAFETY OF HAZARDOUS PRODUCTION FACILITY 2019
RU2748282C1
METHOD FOR RAPID DIAGNOSIS OF METAL PROCESSING MACHINE MODULES 2018
  • Kudoyarov Rinat Gabdulkhakovich
  • Idrisova Yuliya Valerevna
  • Fetsak Sergej Igorevich
  • Munasypov Rustem Anvarovich
  • Masalimov Kamil Adipovich
RU2727470C2
METHOD OF MONITORING EMERGENCY SITUATIONS BASED ON INTEGRATION OF COMPUTER AND INFORMATION COMPONENTS OF GRID SYSTEM 2014
  • Bukhanovskij Aleksandr Valer'Evich
  • Ivanov Sergej Vladimirovich
  • Koval'Chuk Sergej Valer'Evich
  • Nechaev Jurij Ivanovich
  • Sloot Petrus Marija Arnoldus
RU2569568C1
INTEGRATED SPACE-FLIGHT TRAINER 2013
  • Suvorova Tat'Jana Aleksandrovna
  • Sokhin Igor' Georgievich
  • Krjuchkov Boris Ivanovich
RU2534474C2
METHOD FOR MOTION CONTROL OF MILITARY VEHICLES MOVING IN A COLUMN, TAKING INTO ACCOUNT THE STATE OF THE SUPPORT SURFACE 2020
  • Kasaj Sergej Alekseevich
  • Tretyakov Aleksandr Anatolevich
  • Gejntse Eduard Aleksandrovich
  • Ignatovich Vladimir Vladimirovich
  • Khomutov Andrej Aleksandrovich
  • Gavrikov Aleksandr Anatolevich
  • Posmetev Viktor Valerevich
  • Ivanov Roman Alekseevich
RU2746046C2
METHOD FOR ADAPTIVE FORECASTING OF RESIDUAL OPERATING LIFE OF COMPLEX OBJECTS, AND DEVICE FOR ITS IMPLEMENTATION 2013
  • Bekarevich Anton Andreevich
  • Budadin Oleg Nikolaevich
  • Morozova Tat'Jana Jur'Evna
  • Toporov Viktor Ivanovich
RU2533321C1
DIAGNOSTIC OF AIRCRAFT SERVICE SYSTEMS OPERATING CONDITIONS 2014
  • Kozlov Viktor Grigor'Evich
  • Zakharov Pavel Aleksandrovich
RU2559401C1
INTEGRATED CONTROL SYSTEM OF PIPELINE SYSTEM "EASTERN SIBERIA - PACIFIC OCEAN - II" (ICS PS "ESPO-II") 2013
  • Teksheva Irina Valer'Evna
  • Nastepanin Pavel Evgen'Evich
  • Gorinov Mikhail Aleksandrovich
  • Evtukh Konstantin Aleksandrovich
  • Luk'Janenko Maksim Sergeevich
  • Savel'Ev Aleksandr Vital'Evich
  • Donskoj Mikhail Nikolaevich
RU2551787C2
METHOD FOR DETERMINING MALFUNCTION OF GAS TEMPERATURE SENSORS 2023
  • Mayatskij Sergej Aleksandrovich
  • Teslya Denis Nikolaevich
  • Shkut Kaj Leonidovich
RU2811493C1

RU 2 580 786 C2

Authors

Sletnev Maksim Sergeevich

Dates

2016-04-10Published

2014-05-22Filed