The Role of Information Management in CBRN Protection

doi: 10.32561/nsz.2023.1.5

Abstract

The detection of chemical, biological, radiological and nuclear (CBRN) incidents is a high priority and has been an intensively researched topic for decades. Ongoing technological, data processing and automation advances are opening up new development potentials in the field of CBRN protection, which has become a complex, interdisciplinary field. Accordingly, chemists, physicists, meteorologists, military experts, programmers and data scientists are all involved in the researches. The key to effective enhancement of domestic CBRN defence capabilities also lies in continuous and directed development along a well-structured concept. The aim of our research is to provide an overview of the main components of modern CBRN defence technologies, including a summary of the conceptual requirements for CBRN reconnaissance and decision support steps, and to present the role and recent opportunities of information management in these processes.

Keywords:

CBRN protection information management decision support system CBRN architecture

References

Ahmed, Nizam Uddin (2022): Integrating Machine Learning in Military Intelligence Process: Study Of Futuristic Approaches Towards Human-Machine Collaboration. National Defence College E-Journal, 2(1), 59–89.

Altan, Burak – Gürer, Servet – Alsamarei, Ali – Demir, Damla Kıvılcım – Düzgün, H. Șebnem – Erkayaoǧlu, Mustafa– Surer, Elif (2022): Developing Serious Games for CBRN-e Training in Mixed Reality, Virtual Reality, and Computer-Based Environments. International Journal of Disaster Risk Reduction, 77, 103022. Online: https://doi.org/10.1016/j.ijdrr.2022.103022

Berek Tamás (2016): LCD-3 széria, mint lehetséges hatékony eszköz az alegységek ABV védelmi felszerelés rendszerében. Műszaki Katonai Közlöny, 26(1), 68–79.

Berek Tamás – Szabó Sándor (2012): Az ABV mentesítő állomás Force Protection koncepciója. Hadmérnök, 7(3), 89–99.

Bordetsky, Alex – Dolk, Daniel (2013): A Conceptual Model for Network Decision Support Systems. In 46th Hawaii International Conference on System Sciences. Wailea, 1212–1221. Online: https://doi.org/10.1109/HICSS.2013.32

Bouhamed, Omar – Ghazzai, Hakim – Besbes, Hichem – Massoud, Yehia (2020): A UAV-Assisted Data Collection for Wireless Sensor Networks: Autonomous Navigation and Scheduling. IEEE Access, 8, 110446–110460. Online: https://doi.org/10.1109/ACCESS.2020.3002538

Cascio, Jordan – Hale, Morgan – Owens, Amy – Swann, Shafer – Weliver, Andrew – Jiménez, José (2019): Creating a Decision Support Tool for the Stryker NBC RV. In Proceedings of the Annual General Donald R. Keith Memorial Conference. West Point, NY: Department of Systems Engineering United States Military Academy, 124–129.

Chlebo, Paul Jr. – Christman, Gerard J. – Johnson, Roy A. “Al” (2011): Enhancing Collective C2 in the International Environment: Leveraging the Unclassified Information Sharing Enterprise Service. In 16th International Command and Control Research and Technology Symposium, 1–49.

Drury, Brett – Ullah, Ihsan – Madden, Michael G. (2018): An Information Retrieval System for CBRNe Incidents. In ECML PKDD 2018 Workshops. Cham: Springer, 211–215. Online: https://doi.org/10.1007/978-3-030-13453-2

Gawlik-Kobylińska, Małgorzata – Gudzbeler, Grzegorz – Szklarski, Łukasz – Kopp, Norbert – Koch-Eschweiler, Helge – Urban, Mariusz (2021): The EU-SENSE System for Chemical Hazards Detection, Identification, and Monitoring. Applied Sciences, 11(21), 10308. Online: https://doi.org/10.3390/app112110308

Islam, Mohd. Noor – Jang, Yeong-Min – Choi, Sun-Woong – Park, Sang-Joon (2009): Key Technology Issues for Military Sensor Networks. Information and Communications Magazine, 26(3), 41–51.

Juhász László (2001): Az ABV-felderítés béke és háborús feladatainak összehangolása a hazai gyakorlat és a NATO-elvek alapján. PhD disszertáció.

Khaleghi, Bahador – Khamis Alaa – Karray, Fakhreddine O. – Razavi, Saiedeh N. (2013): Multisensor Data Fusion: A Review of the State-of-the-Art. Information Fusion, 14(1), 28–44. Online: https://doi.org/10.1016/j.inffus.2011.08.001

Kon, Kazuyuki – Igarashi, Hiroki – Matsuno, Fumitoshi – Sato, Noritaka – Kamegawa, Tetsushi (2012): Development of a Practical Mobile Robot Platform for NBC Disasters and Its Field Test. In 2012 IEEE International Symposium on Safety, Security, and Rescue Robotics (SSRR). IEEE. Online: https://doi.org/10.1109/SSRR.2012.6523894

Lawrence, Kaitlin – Kuhne, Wendy – Swindle, Ashlee (2020): Development of FRET clusters for CBRN Detection. LDRD Report. Online: https://doi.org/10.2172/1651109

Lundberg, Scott – Paffenroth, Randy – Yosinski, Jason (2010): Algorithms for Distributed Chemical Sensor Fusion. Signal and Data Processing of Small Targets, 7698, 60–71. Online: https://doi.org/10.1117/12.849588

Madhani, Sunil – Tauil, Miriam – Zhang, Tao (2005): Collaborative Sensing Using Uncontrolled Mobile Devices. In 2005 International Conference on Collaborative Computing: Networking, Applications and Worksharing. IEEE, 2005. Online: https://doi.org/10.1109/COLCOM.2005.1651206

Marinelli, William J. – Schmit, Thomas – Rentz Dupuis, Julia – Mulhall, Phil – Croteau, Philly – Manegold, David – Beshay, Manal – Lav, Marvin (2015): Cooperative Use of Standoff and UAV Sensors for CBRNE Detection. In Chemical, Biological, Radiological, Nuclear, and Explosives (CBRNE) Sensing XVI. 9455. Baltimore: SPIE. Online: https://doi.org/10.1117/12.2177023

Mullins, Steven J. (2021): Information Sharing Patterns in Action Teams: Understanding Cognitive Interactions in Dynamic Environments. In 25th International Command and Control Research and Technology Symposium, EasyChair Smart CFP. Southampton, 1–23.

Szabó Sándor (2017): Az új generációs mentesítő rendszerek hatása a hazai ABV mentesítő képesség átalakítására. PhD-disszertáció. Budapest: Nemzeti Közszolgálati Egyetem.

Tarapata, Zbigniew – Antkiewicz, Ryszard – Najgebauer, Andrzej – Pierzchała, Dariusz (2021): Risk Analysis and Alert System for CBRN Threats: Features and Functions. In Proceedings of the 37th International Business Information Management Association Conference, Córdoba, Spain.

Viengdavanh Róbert Manivanh (2012): Az atom-, biológiai- és vegyivédelem meteorológiai vonatkozásai. Szakdolgozat. Budapest: ELTE.

Zhang, Tao – Madhani, Sunil – Berg, Eric van den (2005): Sensors on Patrol (SOP): using Mobile Sensors to Detect Potential Airborne Nuclear, Biological, and Chemical Attacks. In MILCOM 2005, IEEE Military Communications Conference, IEEE 2005. Online: https://doi.org/10.1109/MILCOM.2005.1606107

Downloads

Download data is not yet available.