METHOD OF SIMULATING PROCESSES OF PROVIDING SURVIVABILITY OF DISTRIBUTED COMMUNICATION NETWORKS OF DIFFERENT-LEVEL CONTROL SYSTEMS Russian patent published in 2019 - IPC G06F17/50 

Abstract RU 2702902 C1

FIELD: information technology.

SUBSTANCE: invention relates to modeling and is intended for design of radioelectronic, technical systems, as well as for evaluation of their survivability. Method of simulating processes for providing survivability of distributed communication networks involves simulating external destructive effects on moving elements (communication nodes) of a communication network of a superior control system at the CR of different levels and objects of higher authorities (officials and locations of their location and movement), estimating main survivability of elements (communication nodes) of the communication network of a superior control system at the CR of different levels and objects of higher authorities (officials and locations of their location and movement), process of forming a plan of actions to ensure survivability of elements (communication nodes) of a communication network of a superior control system at the CR of different levels and objects of higher authorities (officials and locations of their location and movement), predicting the efficiency of planned measures according to the developed set of documents for ensuring survivability of elements (communication nodes) of the communication network of a higher control system at the CR of different levels and objects of higher authorities (officials and locations of their location and movement).

EFFECT: increase the reliability of the assessment of simulated processes.

1 cl, 1 dwg

Similar patents RU2702902C1

Title Year Author Number
METHOD OF MODELING PROCESSES OF PROVIDING STRUCTURAL SURVIVABILITY OF DISTRIBUTED COMMUNICATION NETWORKS OF MULTILEVEL CONTROL SYSTEMS IN CONDITIONS OF DESTRUCTIVE EFFECTS 2018
  • Anisimov Vladimir Georgievich
  • Anisimov Evgenij Georgievich
  • Gasyuk Dmitrij Petrovich
  • Khrulev Vadim Leontevich
  • Grechishnikov Evgenij Vladimirovich
  • Belov Andrej Sergeevich
  • Derov Maksim Nikolaevich
  • Kazenov Ivan Dmitrievich
RU2698407C1
METHOD OF MODELING PROCESSES OF JUSTIFICATION OF REQUIRED LEVEL OF SURVIVABILITY OF DISTRIBUTED COMMUNICATION NETWORKS OF A SUPERIOR CONTROL SYSTEM IN CONDITIONS OF OPENING AND EXTERNAL DESTRUCTIVE EFFECTS 2018
  • Grechishnikov Evgenij Vladimirovich
  • Shumilin Vyacheslav Sergeevich
  • Trakhinin Egor Leonidovich
  • Belov Andrej Sergeevich
  • Anisimov Vladimir Georgievich
  • Anisimov Evgenij Georgievich
RU2702503C1
METHOD FOR MODELING AND EVALUATING EFFICIENCY OF COMPLEX APPLICATION OF DIVERSE FORCES, FACILITIES AND RESOURCES 2018
  • Anisimov Vladimir Georgievich
  • Anisimov Evgenij Georgievich
  • Grechishnikov Evgenij Vladimirovich
  • Belov Andrej Sergeevich
  • Sysuev Sergej Yurevich
  • Orlov Dmitrij Vasilevich
  • Kozhukhov Dmitrij Sergeevich
RU2691257C1
METHOD OF MODELING AND EVALUATING THE EFFICIENCY OF MANAGEMENT AND COMMUNICATION PROCESSES 2018
  • Anisimov Vladimir Georgievich
  • Anisimov Evgenij Georgievich
  • Grechishnikov Evgenij Vladimirovich
  • Belov Andrej Sergeevich
  • Orlov Dmitrij Vasilevich
  • Dobryshin Mikhail Mikhajlovich
  • Linchikhina Anastasiya Vladimirovna
RU2673014C1
METHOD OF SIMULATING A VERSION OF CONSTRUCTING A DISTRIBUTED COMMUNICATION NETWORK OF A SUPERIOR CONTROL SYSTEM 2019
  • Anisimov Vladimir Georgievich
  • Anisimov Evgenij Georgievich
  • Grechishnikov Evgenij Vladimirovich
  • Kezhaev Valerij Alekseevich
  • Belov Andrej Sergeevich
  • Sysuev Sergej Yurevich
  • Lyubarchuk Fedor Nikolaevich
  • Derov Maksim Nikolaevich
  • Molotkova Baira Borisovna
  • Saurenko Tatyana Nikolaevna
  • Trakhinin Egor Leonidovich
RU2722924C1
MODELING TECHNIQUE OF MANAGEMENT AND COMMUNICATION PROCESSES IN DISTRIBUTED TERRITORY 2016
  • Anisimov Vladimir Georgievich
  • Grechishnikov Evgenij Vladimirovich
  • Belov Andrej Sergeevich
  • Skubev Aleksandr Vasilevich
  • Dobryshin Mikhail Mikhajlovich
RU2631970C1
METHOD OF CONSTRUCTION OF DISTRIBUTED CONTROL POINT IN CONDITIONS OF OPENING AND EXTERNAL DESTRUCTIVE EFFECTS OF ATTACKER 2018
  • Grechishnikov Evgenij Vladimirovich
  • Belov Andrej Sergeevich
  • Sanin Yurij Vasilevich
  • Shumilin Vyacheslav Sergeevich
  • Tsitsin Egor Alekseevich
RU2676893C1
METHOD OF DETERMINING NUMBER OF BACKUP COMMUNICATION LINES PROVIDING STABLE PROVISION OF TELECOMMUNICATION SERVICES TO CORPORATE COMMUNICATION NETWORK 2023
  • Gorbulia Dmitrii Sergeevich
  • Dobryshin Mikhail Mikhailovich
  • Belov Andrei Sergeevich
  • Struev Aleksandr Anatolevich
  • Karamykhova Oksana Viktorovna
  • Anisimov Vladimir Georgievich
  • Gromov Iurii Iurevich
  • Filin Fedor Viktorovich
RU2824731C1
METHOD OF MODELING CONTROL POINTS 2016
  • Gorelik Sergej Petrovich
  • Grechishnikov Evgenij Vladimirovich
  • Shumilin Vyacheslav Sergeevich
RU2640734C1
METHOD OF SIMULATING A DISTRIBUTED COMMUNICATION NETWORK OF A SUPERIOR CONTROL SYSTEM WITH THE REQUIRED RELIABILITY LEVEL OF ITS ELEMENTS 2020
  • Anisimov Vladimir Georgievich
  • Anisimov Evgenij Georgievich
  • Malinovskij Vladimir Stepanovich
  • Sysuev Sergej Yurevich
  • Belov Andrej Sergeevich
  • Trakhinin Egor Leonidovich
  • Davlyatova Malika Abdimuratovna
  • Byshovets Viktor Petrovich
  • Usikov Roman Fedorovich
RU2736528C1

RU 2 702 902 C1

Authors

Anisimov Vladimir Georgievich

Anisimov Evgenij Georgievich

Khrulev Vadim Leontevich

Grechishnikov Evgenij Vladimirovich

Belov Andrej Sergeevich

Sysuev Sergej Yurevich

Kazenov Ivan Dmitrievich

Shumilin Vyacheslav Sergeevich

Dates

2019-10-14Published

2018-05-18Filed