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AUTOMATED GEOINFORMATION SYSTEM OF SUPPORT OF DECISION MAKING OF THE COMMANDER OF AN AIRPLANE ROCKET REGIMENT ON PREPARING FOR MANAGEMENT OF COMBAT ACTION
AUTOMATED GEOINFORMATION SYSTEM OF SUPPORT OF DECISION MAKING OF THE COMMANDER OF AN AIRPLANE ROCKET REGIMENT ON PREPARING FOR MANAGEMENT OF COMBAT ACTION
The utility model relates to special-purpose digital devices and can be used to automatically prepare the decision of the anti-aircraft missile regiment commander to prepare for combat operations and develop electronic combat documents using a geographic information system. When preparing for combat operations, the basis for managing subordinate units is the decision of the commander anti-aircraft missile regiment for military operations, which is adopted on the basis of clarification of the combat mission, Ki conditions and calculations. However, at present, the commander of the anti-aircraft missile regiment makes decisions based mainly on his own experience and intuition in the face of severe time pressure and a huge flow of incoming information. There is no automation of the decision-making process. The objective of the utility model is to increase the efficiency of the decision of the anti-aircraft missile regiment commander to prepare for combat operations by automating the decision-making process using the geographic information system. The technical result of the utility model is the creation of an automated geographic information support system for the decision-making of the anti-aircraft missile regiment to prepare for warfare. Achieving the declared technical p The result and the solution of the problem is ensured by the fact that the automated geographic information support system for the decision-making of the commander of the anti-aircraft missile regiment to prepare for the conduct of hostilities, containing a knowledge base, logical inference machine, working memory, explanation unit, user interface, knowledge acquisition unit, and output the knowledge base and the first output of the working memory are connected to the first and second inputs of the logical output machine, the third input of the logical output machine is connected to the second output of the bl for the acquisition of knowledge, the first and second outputs of the logical output machine are connected to the input of the working memory and the input of the knowledge base, the third output of the logical output machine is connected to the first input of the explanation unit, the output of the explanation unit and the first output of the knowledge acquisition unit are connected to the first and second inputs of the user interface , the first and second outputs of the user interface are connected to the second input of the explanation unit and the input of the knowledge acquisition unit, the third input and the third output of the user interface are the input and output of the system, additionally included is a database of a simulation model, a unit for assessing combat capabilities, a unit for planning actions by a missile defense system, a unit for preparing initial data, a geographic information system, a simulation model for military operations, a block for developing decisions, a database for a geographic information system, a unit for analyzing the results of simulation moreover, the fourth input of the logical output machine is connected to the second output of the source data preparation unit, the fifth input and the fourth output with the third output and the third input of the block and making decisions, the sixth input and fifth output with the output and second input of the simulation results analysis unit, the first input and output of the simulation model database with the second output and input of the combat capabilities assessment unit, the second input with the first output of the source data preparation unit, the first output a combat capabilities assessment unit with an input of a missile defense planning unit, a third output and an input of a source data preparation unit with a first input and a first output of a decision-making unit, a second input and a second output of a production unit solutions with the first output and the first input of the geographic information system, the second input and second output of the geographic information system with the first output and second input of the combat simulation model, the third input with the output of the geographic information system database, the first input of the combat simulation model with the output of the airborne action planning block , the second exit with the first input of the simulation results analysis unit. The proposed system design improves the efficiency of the decision of the anti-aircraft missile commander We can prepare for combat operations by automating the decision-making process using a geographic information system. 1 ill.
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