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METHOD OF SEISMOACOUSTIC MONITORING OF SEPARATE SIGNALS OF EXPLOSIVE FIELDS FOR REMOTE RECONNAISSANCE

Igor Yarmolai · Cybersecurity: Education, Science, Technique · 2025

The article is devoted to the development and justification of an effective method of remote reconnaissance and monitoring that uses the unique physical characteristics of explosive fields. The need for such a method is driven by the requirement for reliable, all-weather, and covert identification and localization of explosion sources, which is critical for security, military, and engineering reconnaissance. The method considers an explosion as a complex source that simultaneously generates seismic (elastic) and acoustic (infrasonic) signals. The main objective of the work is to present a method of seismoacoustic monitoring of explosive fields, which allows not only to register but also to classify individual signals, generating highly informative data for remote reconnaissance. The methodology is based on the stages of mathematical modeling of seismoacoustic processes. These stages include: determining the physical conditions for signal generation: a detailed analysis of the conversion of explosion energy into seismic waves propagating in the ground and acoustic (shock/infrasonic) waves propagating in the atmosphere; mathematical principles of modeling physical processes: developm

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