Abstract

The article considers the stages of the logical-time cyclogram of detection and maintenance of groups of controlled objects by means of the air defense system of a naval surface force. An algorithm for forming arrays of detected objects is implemented, taking into account the impulse volume, the coverage sector to accompany all detected objects and other configuration factors, considering probabilistic estimates of the detection of controlled objects. A mathematical model of the functioning of the naval surface force air defense system has been created, taking into account various parameters of active means affecting the groups of controlled objects, as well as taking into account firing strategies in the presence of network-centric control of the order of controlled objects. An algorithm for evaluating the results of fire counteraction of a network-centric group of controlled objects on the part of the air defense system of a naval surface force has been considered. A variant of the simulation implementation of the logical-time cyclogram of the operation of air defense system fire channels has been developed, and examples of the implementation of a logical-time cyclogram for an arbitrary composition of the air defense system are given, taking into account the strategic actions of active means of a naval surface force. Additional conditions for embedding the developed version of the algorithm of the air defense system logical-time cyclogram into the system for simulating the conflict interaction of systems are listed

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