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Improvement of the Urban Security and Defense Through the Implementation of Advance Detection Sensors System (USEAID) Assoc. Prof. Kiril Stoychev, PhD,

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Presentation on theme: "Improvement of the Urban Security and Defense Through the Implementation of Advance Detection Sensors System (USEAID) Assoc. Prof. Kiril Stoychev, PhD,"— Presentation transcript:

1 Improvement of the Urban Security and Defense Through the Implementation of Advance Detection Sensors System (USEAID) Assoc. Prof. Kiril Stoychev, PhD, Eng. Valeri Panevski April 16, 2013, Sofia Seminar ” Development of a model for decision making at a situation of multilateral/complex terrorist threat. Development of unified integrated system for effective management against multilateral/complex terrorist threat” ЕUROPIEN COMMISSION DIRECTORATE-GENERAL HOME AFFAIRS With the financial support of the Prevention, Preparedness and Consequence Management of Terrorism and other Security-related Risks Programme. European Commission-Directorate-General Home Affairs

2 Content: 1. Project context. 2. Project objectives. 3. Project implementation capabilities. 4. Expected results. USEAID

3 Effective protection of critical infrastructure (CI) requires:  advanced, intelligent detection and sensor systems for both physical and cyber aspects of CI protection;  rapidly and accurately locate and characterize threats against CI, such as acts of cyber or physical intrusion, or the presence of chemicals and/or explosives;  to monitor and report the condition of the various nodes (such as power plants and industrial complexes) and links (such as transportation systems and utilities) that form CI networks;  sensors must communicate with each other and be deployed at many locations to form a robust network;  sensors may take the form of intelligent autonomous software agents that can travel throughout a computing or communications network. USEAID

4 1.1 Targeted level. - local, national and regional bodies with responsibilities in the areas of risk prevention and CI protection and defence; - CI management body; - manufacturers of sensor devices, developers of software for system operation of the devices; - scientific and educational units. 1.2 Project’s added value. - increasing local, national, regional and European capabilities in the area of defense and security; - enlargement the opportunities for civilian application development; - widening the cost effectiveness by ensuring appropriate business continuity management; - reducing the cost of improving the ecological balance in the region; - creating jobs. USEAID

5 2. Project objectives. 2.1. EDA priorities. European Defеnce Research and Technology Strategy - 6-th priority ”Command and control technologies (campaign /ops/ mission planning and mgt, battlespace mgt, shared situational understanding, data fusion / mining / reduction, image exploitation, innovative Sensors for Urban Warfare, including acoustic and seismic sensors).” 2.2. Specific objectives.  to reduce the response time of Reaction Forces in crisis situation;  to achieve an interoperability of different technologies sensing devices;  to develop an underwater sensor system model for unauthorized intrusion and contamination by chemical and biological agents;  to develop the Urban Search&Resque (USAR) models for CI protection - oil refinery on the sea bank;  to create a USEAID Model at the local, national and regional level;  to create a prototype of a simulator of the USEAID based on the architectural model. USEAID

6 USEAID 3. 1 The capabilities needed to successfully implement the project. - prooven ability in the field of sensors and sensor systems - systems and subsystems developed nationally or full participation in the development of European systems on the same topic; - availability of specialized experimental facilities, laboratories and test polygons; - experience on software development and communication and information systems integration; - a long time and rich experience in the USEAID on a national and international level; - experience in developing of new materials and nanotechnologies in the field of materials science; - experience in developing of methodologies and testing; - operational sensors use experience; - simulators development experience; - experience in the field of development of operational procedures and management of sensor systems. 3. Project implementation capabilities.

7 USEAID 3. 2 The partners on Bulgarian site.  IMSETHC-BAS - Institute of Metal Science, Equipment, and Technologies “Acad. A. Balevski” with Hydroaerodynamics Centre - Bulgarian Academy of Sciences  The University of Ruse  NBU - New Bulgarian University/Foundation for NBU  ICB Ltd. - InterConsult Bulgaria Ltd 3.3 The partners on EU site. Advantages of the proposed European partners - Czech Republic, Greece, Italy, Romania and UK: - some of these countries have oil refineries near the settlements, such as „Petromidia“, nearby the city of Constanta, Romania; „Lukoil Bulgaria“, nearby the city of Burgas, Bulgaria; IP „Italiana Petroli“, nearby the Falconara Marittima, Italy and „Hellenic Petroleum“, nearby the city of Elefsis, Greece; - all these countries have common necessity to accelerate the development and practical application of modern technical solutions in the field of CI protection; - these countries have extensive experience in the USAR and CI protection, through its participation in international and European projects.

8 USEAID 4. Expected results. 4.1 Developed models and technological equipment. - state-of-the-art equipment model for USAR Forces for detection and sensing for timely response in crisis situation; - networking of different types sensing devices using interoperable protocols for data collection; - operational sensor systems for underwater in terms of unauthorized intrusion and contamination by chemical and biological agents; - appropriate functioning of USAR models for critical infrastructure protection - oil refinery on sea / river bank; - functional security model for protection of oil refinery by land, including objects (departmental, regional and municipal authorities, schools and kindergartens) located in the city, which is situated nearby refinery; - functional USEAID Model.

9 USEAID 4.2 Presentation of the developed models and technological equipment. 4.2.1 Sensors for CI land safety. - -central control station ; - -seismic sensors; - -optical sensors; - -microwave sensors. 4.2.2 USAR equipment. - -thermal camera; - -acoustic sensors; - -CO2 detectors; - -motion sensors; - -thermal and heat sensors; - -electro- optical sensors; - -radars.

10 USEAID 4.2.3 Security of critical infrastructure MARINE.   higher intelligent sensors;   advanced communications and information system 4.2.4 Software intensive system for Sensor network discovery, visualization, topology analysis and management.   dynamic sensor network discovery;   dynamic sensor network digital data model generation;   sensor network visualization based on the digital data models;   sensor network topology filtering and analysis on certain crtierias such as sensor type, sensor model, sensor location and sensor state;   sensor location on digital geo location map;   sensor configuration and status identification.

11 USEAID INSTITUTE OF METAL SCIENCE, EQUIPMENT AND TECHNOLOGIES WITH HYDROAERODYNAMICS CENTRE BULGARIA, SOFIA, 1574, 67, SHIPCHENSKI PROHOD blvd., TEL.: + 359 2 46 26 200, FAX: + 359 2 46 26 300


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