Who NATO demonstrates

The three technologies developed through DEXTER will allow the identification of carriers of firearms and explosives among moving pedestrians, remotely and in real time. The system will move beyond the measures currently in place, and enable the detection of these threats discretely, without requiring random checks on moving passengers or checkpoints. DEXTER integrates the technologies in a capability that can incorporate additional detection systems as necessary to keep up with evolving threats.

 

“What DEXTER has delivered is a solution at the crossroads between counter-terrorism and advanced ltechnologies, in line with NATO strategic objectives and priorities” stated NATO Assistant Secretary General for Emerging Security Challenges, David van Weel. DEXTER is an important deliverable of NATO’s Counter-Terrorism Action Plan. At the same time, by relying on the most recent advancements on sensors, Subway stations, airports, and other mass transit and gathering venues across the world have been targeted by terrorist attacks, leading to Subway stations, airports, and other mass transit and gathering venues across the world have been targeted by terrorist attacks, leading to loss of life and damage to infrastructure. With DEXTER – short for Detection of EXplosives and firearms to counter TERrorism – NATO has developed the prototype of a technology to counter the threat from firearms and explosives in crowded venues. After three years of research supported by the NATO Science for Peace and Security (SPS) Programme, a one-month testing of the prototype was was successfully completed in a subway station in Rome, Italy of lifeSubway stations, airports, and other mass transit and gathering venues across the world have been targeted by terrorist attacks, leading to loss of life and damage to infrastructure. With DEXTER – short for Detection of EXplosives and firearms to counter TERrorism – NATO has developed the prototype of a technology to counter the threat from firearms and explosives in crowded venues. After three years of research supported by the NATO Science for Peace and Security (SPS) Programme, a one-month testing of the prototype was was successfully completed in a subway station in Rome, Italy and damage to infrastructure. With DEXTER – short for Detection of EXplosives and firearms to counter TERrorism – NATO has developed the prototype of a technology to counter the threat from firearms and explosives in crowded venues. After three years of research supported by the NATO Science for Peace and Security (SPS) Programme, a one-month testing of the prototype was was successfully completed in a subway station in Rome, Italy and artificial intelligence, DEXTER represents a perfect example of NATO’s agenda in the field of Emerging and Disruptive Technologies (EDTs).Subway stations, airports, and other mass transit and gathering venues across the world have been targeted by terrorist attacks, leading to loss of life and damage to infrastructure. With DEXTER – short for Detection of EXplosives and firearms to counter TERrorism – NATO has developed the prototype of a technology to counter the threat from firearms and explosives in crowded venues. After three years of research supported by the NATO Science for Peace and Security (SPS) Programme, a one-month testing of the prototype was was successfully completed in a subway station in Rome, ItalySubway stations, airports, and other mass transit and gathering venues across the world have been targeted by terrorist attacks, leading to loss of life and damage to infrastructure. With DEXTER – short for Detection of EXplosives and firearms to counter TERrorism – NATO has developed the prototype of a technology to counter the threat from firearms and explosives in crowded venues. After three years of research supported by the NATO Science for Peace and Security (SPS) Programme, a one-month testing of the prototype was was successfully completed in a subway station in Rome, Italy

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