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Multisensor system for the protection abovewater of seaport

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
There are many separated infrastructural objects within a harbor area that may be considered „critical”, such as gas and oil terminals or anchored naval vessels. Those objects require special protection, including security systems capable of monitoring both surface and underwater areas, because an intrusion into the protected area may be attempted using small surface vehicles (boats, kayaks, rafts, floating devices with weapons and explosives) as well as underwater ones (manned or unmanned submarines, scuba divers). The paper will present the concept of multisensor security system for a harbor protection, capable of complex monitoring of selected critical objects within the protected area. The proposed system consists of a command centre and several different sensors deployed in key areas, providing effective protection from land and sea, with special attention focused on the monitoring of underwater zone. The protection of surface area is based on medium-range radar and LLTV and infrared cameras.
Słowa kluczowe
Czasopismo
Rocznik
Tom
Strony
101--112
Opis fizyczny
Bibliogr. 37 poz., rys.
Twórcy
autor
  • Institute of Optoelectronics, Military University of Technology gen. S. Kaliskiego Str. 2, 00-908 Warsaw, Poland
  • Institute of Optoelectronics, Military University of Technology gen. S. Kaliskiego Str. 2, 00-908 Warsaw, Poland
  • Institute of Optoelectronics, Military University of Technology gen. S. Kaliskiego Str. 2, 00-908 Warsaw, Poland
  • Institute of Optoelectronics, Military University of Technology gen. S. Kaliskiego Str. 2, 00-908 Warsaw, Poland
  • Institute of Optoelectronics, Military University of Technology gen. S. Kaliskiego Str. 2, 00-908 Warsaw, Poland
autor
  • Institute of Optoelectronics, Military University of Technology gen. S. Kaliskiego Str. 2, 00-908 Warsaw, Poland
Bibliografia
  • [1] K. Kubiak, www.wns.dsw.edu.pl/fileadmin/user_upload/wszechnica/04.pdf, (in Polish) (2010).
  • [2] B.J. Rhodes, N.A. Bomberger and all, “Maritime situation monitoring and awareness using learning mechanisms”, Proceedings of IEEE MILCOM 2005 Military Communications Conference Atlantic City NJ USA, 2005.
  • [3] D. Suchman, “Basic Do's and Don'ts of Designing, Installing and Operating a Harbor Protection system”, Proceedings of TICA'05, (2005).
  • [4] A.C. Van Den Broek, S.P. Van Den Broek and all, “A multi-sensor scenario for coastal surveillance”, Proc. of SPIE, 6736, 67360P (2007).
  • [5] M. Seibert, B.J. Rhodes, N.A. Bomberger and all, “SeeCoast port surveillance”, Proc. Of SPIE 6204, 62040B (2006).
  • [6] G.a Yan, B.B.b Bista, D.B.c Rawat and all, “General active position detectors protect VANET security”, Proceedings - 2011 International Conference on Broadband and Wireless Computing Communication and Applications 6103009, 11-17 (2011).
  • [7] R. Dulski, M. Szustakowski, M. Kastek and all, “Infrared uncooled cameras used in multi-sensor systems for perimeter protection”, Proc. of SPIE, 7834, 783416 (2010).
  • [8] M. Zyczkowski, M. Szustakowski, W. Ciurapinski and all, “Integrated optoelectronics security system for critical infrastructure protection”, Przegląd Elektrotechniczny 86 (10), 157-160 (2010).
  • [9] G. Fasano, L. Forlenza, D. Accardo and all,”Integrated obstacle detection system based on radar and optical sensors”, AIAA Infotech at Aerospace 2010, 3421 (2010).
  • [10] G. Fasano, D. Accardo, A. Moccia and all, “Flight Test results for a multi sensor obstacle detection and tracking system for sense and avoid applications”, AIAA Infotech and Aerospace 2009, (2009).
  • [11] A. Asada, K. Kuramoto, T. Tanaka and all, “Development of underwater security sonar system”, OCEANS 2006 - Asia Pacific, 4393879 (2007).
  • [12] E. Belcher, W. Hanot, J. Brush, “Dual-Frequency Identification Sonar (DIDSON)” UT2002, 187-192(2002).
  • [13] T. Sosnowski, H. Madura, M. Kastek and all, “Method of objects detection employing passive IR detectors for security systems”, Proc. of SPIE 7113, 71131G (2008).
  • [14] M. Kastek, T. Sosnowski, H. Polakowski and all, “Long-range PIR detector used for detection of crawling people”, Proc. of SPIE 7113, 71131F (2008).
  • [15] P. Lindquist, “Area Protection Network (APN) - A concept for autonomous perimeter surveillance and protection with demonstrator”, Proc. of SPIE 6736, 67360N, (2007).
  • [16] M. Kastek, T. Sosnowski, T. Piatkowski, “Passive infrared detector used for detection of very slowly moving of crawling people”, Opto-electronics Review 16 (3), 328-335 (2008).
  • [17] M. Kastek, H. Madura, T. Sosnowski, “Passive infrared detector used for infrastructure protection”, WIT Transactions on the Built Environment 108, pp. 61-70 (2009).
  • [18] M. Szustakowski, W. Ciurapinski, M. Zyczkowski and all, “Multispectral system for perimeter protection of stationary and moving objects”, Proc. of SPIE 7481, 74810D (2009).
  • [19] C.J. Baker, H.D. Griffits, “Bistatic and Multistatic Radar Sensor for Homeland Security”, www.natoasi.org/sensors2005/papers/baker.pdf.
  • [20] P. Cory and all, “Radar – Based Intruder Detector for a Robotic Security System”, www.nosc.mil/robots/pubs/spie3525b.pdf.
  • [21] Lipton and all, “Critical Asset Protection, Perimeter and Threat Detection Using Automated Video Surveillance”, www.objectvideo.com.
  • [22] G.Yan, W. Yang, J. Lin and all, “Active location security through dynamically tunable radar in vanet”, Proc. of the 7th IEEE International Conference on Mobile Adhoc and Sensor Systems (MASS 2010) San Francisco USA, 2010;
  • [23] W. Butler, P. Poitevin, J. Bjornholt, “Benefits of wide area intrusion detection systems using FMCW radar”, Proc. of SPIE 6943, 69430Q (2008).
  • [24] Seastrand, M.J., “Maritime microwave radar and electro-optical data fusion for homeland security”, Proc. of SPIE, 5403 (PART 2), 673-682 (2004).
  • [25] M. Zyczkowski, N. Palka, T. Trzcinski and all, “Integrated radar-camera security system - Experimental results”, Proc. of SPIE 8021, 80211U (2011).
  • [26] M. Zyczkowski, M. Szustakowski, W. Ciurapiński and all, “Integrated mobile radarcamera system an airport perimeter security”, Proc. of SPIE 8184, 818406 (2011).
  • [27] G. Bieszczad, T. Sosnowski, H. Madura and all, “Image processing module for high speed thermal camera with cooled detector”, Proc. of SPIE 8012, 80120L (2011).
  • [28] R. Dulski, P. Powalisz, M. Kastek and all, “Enhancing image quality produced by IR cameras”, Proc. of SPIE 7834, 783415 (2010).
  • [29] G. Bieszczad, T. Sosnowski, H. Madura and all, “Adaptable infrared image processing module implemented in FPGA”, Proc. of SPIE 7660, 76603Z (2010).
  • [30] S.P. Van Den Broek, “Detection and classification of infrared decoys and small targets in a sea background”, Proc. SPIE 4029, 70-80 (2000).
  • [31] M. Kastek, R. Dulski, M. Zyczkowski and all, “Multisensor systems for security of critical infrastructures - Concept, data fusion, and experimental results”, Proc. of SPIE 8193, 81933X (2011).
  • [32] D. L. Hall, J. Llinas,”An introduction to multisensor data fusion”, Proc. IEEE vol. 85 no. 1, 6-23 (1997).
  • [33] L. A. Klein, Sensor and Data Fusion Concepts and Applications. SPIE (1993).
  • [34] R. Dulski, S. Milewski, M. Kastek and all, “Detection of small surface vessels in near, medium and far infrared spectral bands”, Proc. of SPIE 8185, 81850U (2011).
  • [35] Burt, P. J., Adelson, E., “The Laplacian pyramid as a compact image code”, IEEE Trans. Communications vol. 31 no. 4, 532-540 (1983).
  • [36] R. Dulski, M. Kastek, G. Bieszczad, and all, “Data fusion used in multispectral system for critical protection”, WIT Transactions on Information and Communication Technologies 42, 165-172 (2009).
  • [37] W. Ciurapinski, R. Dulski, M. Kastek and all, “Data fusion concept in multispectral system for perimeter protection of stationary and moving objects”, Proc. of SPIE 7481, 748111 (2009).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-dad26271-014c-4647-b700-3107f91d37cb
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