METHOD FOR MODELING THE CONNECTION OF MOBILE ELEMENTS OF A CORPORATE MANAGEMENT SYSTEM TO A FIXED COMMUNICATION NETWORK Russian patent published in 2021 - IPC G06N5/00 H04W16/22 G06F30/20 

Abstract RU 2746670 C1

FIELD: communication.

SUBSTANCE: invention relates to a method for modeling the connection of mobile elements of a corporate management system to a fixed communication network. In the method, the geographical fragment of the territory is set, where the elements of the corporate management system are planned to be located. Local fragments of the territory are excluded, where the elements of the corporate management system cannot be deployed. The number and composition of bodies, the structure of the information directions of the corporate management system, the requirements of the corporate management system for communication services, the time of modeling the process of functioning of the corporate management system, the period of checking the coordinates and operating mode of mobile elements of the corporate management system are set. The composition and structure of the fixed communication network are determined. The communication nodes of the elements of the corporate management system are connected to the fixed communication network. Routing options are generated. The routing option in the specified information directions is selected, taking into account the requirements for communication services. Routes between the information-interconnected subscribers of the corporate management system are formed. The coordinate grid of the geographical fragment of the territory, the requirements of the mobile elements of the corporate management system for the availability of communication services of the fixed network, rules for the movement of mobile elements of the corporate management system, types, characteristics, priority and conditions for the use of communication tools used for the deployment of anchor lines are additionally set. Local fragments of the territory are excluded, where it is impossible to deploy communication lines of a given type. The coordinates and mode of operation of mobile elements of the corporate management system are determined with a given verification period. For each mobile element that arrived at the next place of application, according to the functional purpose, the maximum possible consumption of communication means is determined by deploying direct communication lines with the required characteristics in each information direction. The distance to all communication nodes of the fixed network is estimated relatively to the conditions for the deployment of various types of communication means. For each type of communication lines for each mobile element of the corporate management system, a variation series of communication nodes of the fixed network is built based on the obtained distances. Nodes are excluded from the variation series that cannot be connected due to physical and geographical conditions. The consumption of communication means is estimated, necessary for the deployment of the binding line of the mobile element of the corporate management system to the nearest fixed communication node in accordance with the conditions and priority of the use of communication means. It is compared with the maximum possible consumption of communication means. When exceeding the maximum possible consumption of communication means, direct communication lines are deployed in each information direction and the type and amount of spent communication means is remembered. If the consumption of communication means does not exceed the limit value, then the mobile element of the corporate management system is connected to the nearest communication node of the fixed network. Routes are formed in the specified information directions. The fulfillment of the requirements for communication services are checked in each information direction. The availability coefficient of communication services is calculated as the ratio of the amount of services provided with the required quality to the total number of services required for all subscribers of the mobile element of the corporate management system. If the calculated availability coefficient meets the specified requirements, then the type and number of communication means spent to connect the mobile element of the corporate management system to the fixed communication network is remembered. If the calculated availability coefficient does not meet the specified requirements, then the steps for connecting the mobile element of the corporate management system to the communication nodes of the stationary network are repeated with the following members of the variation series in order, until the specified requirements for the availability of communication services are met at the expense of the total connected communication nodes, or the total cost of communication means for the deployment of anchor lines to the involved fixed network nodes does not exceed the limit value. After the end of the modeling time of the corporate management system operation, the types and number of communication means required for the deployment of anchor lines and direct connections are displayed for each mobile element.

EFFECT: automatization of modeling the connection of mobile elements of a corporate management system to a fixed communication network.

1 cl, 1 dwg

Similar patents RU2746670C1

Title Year Author Number
METHOD FOR TRANSFORMING THE INITIAL PHYSICAL STRUCTURE OF A COMMUNICATION NETWORK TO INCREASE THE STABILITY OF THE PRESENTATION OF INFORMATION RESOURCES TO THE MANAGEMENT BODIES OF THE CORPORATE MANAGEMENT SYSTEM 2022
  • Starodubtsev Iurii Ivanovich
  • Smirnov Ivan Iurevich
  • Vershennik Elena Valerevna
  • Sinev Sergei Gennadevich
  • Mitrofanova Tatiana Iurevna
  • Kireev German Aleksandrovich
RU2788672C1
METHOD FOR SIMULATING DYNAMICALLY INTERACTING FIXED-LINE NETWORKS AND MOBILE COMMUNICATION NODES WITH DIFFERENT INTERFACE ELEMENTS 2019
  • Belov Konstantin Grigorevich
  • Vershennik Elena Valerevna
  • Ivanov Sergei Aleksandrovich
  • Zakalkin Pavel Vladimirovich
  • Smirnov Ivan Iurevich
  • Starodubtsev Iurii Ivanovich
RU2723296C1
METHOD FOR MODELING VIRTUAL COMMUNICATION NETWORK ON REMAINING RESOURCES OF PHYSICAL NETWORK 2020
  • Starodubtsev Iurii Ivanovich
  • Ivanov Sergei Aleksandrovich
  • Vershennik Elena Valerevna
  • Vershennik Aleksei Vasilevich
  • Zakalkin Pavel Vladimirovich
  • Smirnov Ivan Iurevich
  • Shuravin Andrei Sergeevich
RU2749444C1
METHOD FOR PROACTIVE RECONFIGURATION OF COMMUNICATION NETWORK STRUCTURE PROVIDING INFORMATION EXCHANGE IN INTERESTS OF CORPORATE MANAGEMENT SYSTEM UNDER CONDITIONS OF DESTRUCTIVE INFLUENCE 2020
  • Starodubtsev Iurii Ivanovich
  • Ivanov Sergei Aleksandrovich
  • Vershennik Elena Valerevna
  • Zakalkin Pavel Vladimirovich
  • Smirnov Ivan Iurevich
  • Anisimov Vasilii Viacheslavovich
RU2747174C1
METHOD FOR ASSESSING AWARENESS OF SOURCE OF DESTRUCTIVE IMPACTS ON STRUCTURE OF CORPORATE MANAGEMENT SYSTEM 2020
  • Starodubtsev Iurii Ivanovich
  • Ivanov Sergei Aleksandrovich
  • Vershennik Elena Valerevna
  • Zakalkin Pavel Vladimirovich
  • Smirnov Ivan Iurevich
  • Vasilev Aleksei Pavlovich
  • Fedorov Vadim Gennadevich
  • Vershennik Aleksei Vasilevich
RU2764390C1
METHOD FOR ENSURING COVERTNESS OF OPERATION OF ELEMENTS OF A COMMUNICATION SYSTEM UTILISING THE RESOURCES OF A PUBLIC COMMUNICATION NETWORK 2021
  • Starodubtsev Iurii Ivanovich
  • Permiakov Aleksandr Sergeevich
  • Lepeshkin Oleg Mikhailovich
  • Vershennik Elena Valerevna
  • Vershennik Aleksei Vasilevich
  • Karpov Mikhail Andreevich
  • Kletskov Dmitrii Aleksandrovich
  • Ostroumov Oleg Aleksandrovich
RU2772548C1
METHOD FOR INCREASING STABILITY OF VIRTUAL COMMUNICATION NETWORK OF CORPORATE CONTROL SYSTEM 2020
  • Starodubtsev Iurii Ivanovich
  • Ivanov Sergei Aleksandrovich
  • Vershennik Elena Valerevna
  • Vershennik Aleksei Vasilevich
  • Zakalkin Pavel Vladimirovich
  • Kuzmich Aleksandr Aleksandrovich
  • Barykin Sergei Evgenevich
RU2750950C1
METHOD OF MODELING A SET OF INDEPENDENT VIRTUAL COMMUNICATION NETWORKS BASED ON A SINGLE PHYSICAL NETWORK 2020
  • Starodubtsev Iurii Ivanovich
  • Ivanov Sergei Aleksandrovich
  • Vershennik Elena Valerevna
  • Zakalkin Pavel Vladimirovich
  • Kuzmich Aleksandr Aleksandrovich
  • Serdiukov Gleb Aleksandrovich
RU2748139C1
METHOD FOR STABLE DATA ROUTING IN A VIRTUAL COMMUNICATION NETWORK 2021
  • Starodubtsev Iurii Ivanovich
  • Ivanov Sergei Aleksandrovich
  • Vershennik Elena Valerevna
  • Zakalkin Pavel Vladimirovich
  • Ivanov Nikolai Aleksandrovich
  • Saburov Oleg Vladimirovich
  • Vershennik Aleksei Vasilevich
RU2757781C1
METHOD OF SIMULATING AN OPTIMUM VERSION OF TOPOLOGICAL ARRANGEMENT OF A PLURALITY OF INFORMATION INTERCONNECTED SUBSCRIBERS ON A GIVEN FRAGMENT OF A PUBLIC COMMUNICATION NETWORK 2018
  • Vershennik Aleksej Vasilevich
  • Vershennik Elena Valerevna
  • Latushko Nikolaj Aleksandrovich
  • Starodubtsev Yurij Ivanovich
RU2690213C1

RU 2 746 670 C1

Authors

Starodubtsev Iurii Ivanovich

Ivanov Sergei Aleksandrovich

Vershennik Elena Valerevna

Zakalkin Pavel Vladimirovich

Smirnov Ivan Iurevich

Fedorova Svetlana Viktorovna

Vershennik Aleksei Vasilevich

Dates

2021-04-19Published

2020-07-31Filed