Abstract

To ensure stable management of technogenic safety and civil protection in these conditions, it is necessary to develop an information model for managing technogenic security under verious conditions of use of the Armed Forces of Ukraine with the provision of minimal risks and threats of emergencies of military technogenic origin. The information model provides for three components, namely: the first is a model for managing technogenic security safety in the zone of ​​the joint forces operation in a steady state; the second is a model for managing technogenic safety in the area of ​​the joint forces operation in an emergency of natural or technogenic origin; third is a model for managing technogenic security in the area of ​​the joint forces operation in an emergency of military-technogenic origin. The paper shows that the information model of the mechanism of man-made safety regulation during emergencies of military-man-made origin is a set of specific methods, forms, techniques, tools and levers of man-made safety regulation, through the improvement of which, in fact, the man-made safety system is improved. regional level. On the example of solving the practical problem of determining the depth and area of ​​distribution of the primary cloud of highly toxic substances and its impact on military facilities, shows the use of information model to provide the decision maker with necessary and sufficient information to make management decisions to ensure military-man-made security . To assess the effectiveness of mechanisms for state regulation of man-made safety at the regional level, it is proposed to use the method of hierarchy analysis. According to this model, the subject of management (management bodies in the field of technogenic safety) exerts a controlling influence (on the basis of laws, decrees, by-laws, standards, resolutions, orders, programs of ecological direction) on the object of management (social facilities, enterprises, natural objects), which in accordance with the received control impact, changes its state, activity, quantitative and qualitative parameters of the state or impact on the environment.

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