PhotonIcs and Electromagnetics Research Symposium,
also known as Progress In Electromagnetics Research Symposium
PIERS Proceedings
Published: 2015-07-09
The Exposure Level of High Power Microwave Pulses
By
Proceedings of 2015 Photonics & Electromagnetics Research Symposium, Prague, July 6 - 9,Page(s)321-325
Abstract
In the paper the investigation of dosimetry of exposure to high power microwave (HPM) pulses has been discussed. The dosimetry was based on recommendations of the Inter- national Commission of Nonionizing Radiation Protection and by the Institute of Electrical and Electronics Engineers. Taking into account the high values of amplitude of HPM pulses and their very short durations the modification of assessing technique was presented. Two parame- ters considered as basic restriction parameters, i.e., specific absorption rate (SAR) and specific absorption (SA) have been analyzed.
Citation
Roman Kubacki, and Salim Lamari, "The Exposure Level of High Power Microwave Pulses," Proceedings of 2015 Photonics & Electromagnetics Research Symposium, Prague, July 6 - 9,Page(s)321-325
References

1. Bugaj, M., "Attenuation measurements of materials used in construction of buildings," PIERS Proceedings, Guangzhou, August 25–28, 2014.        Google Scholar

2. Bugaj, J. and M. T. Wnuk, "Analysis of the impact of surface on parameters of cylindrical microstrip antennas [Analiza wielowarstwowej anteny cylindrycznej ze wzglȩdu na promień krzywizny]," Przegla̧d Elektrotechniczny (Electrical Review), No. 3, 48–51, 2015.        Google Scholar

3. Bugaj, J. and M. T. Wnuk, "Analysis of conformal multilayer antenna working in X band [Analiza wielowarstwowej anteny konformalnej pracujaej w pasmie X]," Przegla̧d Elektrotechniczny (Electrical Review), No. 9, 46-49, 2009.        Google Scholar

4. Bugaj, M., "Measurements of wall attenuation in closed spaces inside a building," PIERS Proceedings, Guangzhou, August 25–28, 2014.        Google Scholar

5. Bugaj, Marek and Marian T. Wnuk, "Optimization parameters of dielectric in aperture-coupled stacked patch antenna on bandwidth," 18th International Conference on Microwaves, Radar and Wireless Communications, MIKON, 2010.        Google Scholar

6. Nowosielski, L. and J. Lopatka, "Measurement of shielding effectiveness with the method using high power electromagnetic pulse generator," PIERS Proceedings, Guangzhou, August 25–28, 2014.        Google Scholar

7. Nowosielski, L. and Z. Piotrowski, "Honeycomb ventilation grill shielding effectiveness measuring methodology," PIERS Proceedings, Guangzhou, August 25–28, 2014.        Google Scholar

8. Przesmycki, R., M. T. Wnuk, L. Nowosielski, and K. Piwowarczyk, "Small chambers shielding efficiency measurements," PIERS Proceedings, Marrakesh, Morocco, March 20–23, 2011.        Google Scholar

9. Nowosielski, L., R. Przesmycki, M. T. Wnuk, and J. Rychlica, "The methods of measuring attenuation of thin absorbent materials used for electromagnetic shielding," PIERS Proceedings, Marrakesh, Morocco, March 20–23, 2011.        Google Scholar

10. Nowosielski, L. and M. T. Wnuk, "Compromising emanations from USB 2 interface," PIERS Proceedings, Guangzhou, August 25–28, 2014.        Google Scholar

11. Piwowarczyk, K., R. Przesmycki, L. Nowosielski, and M. T. Wnuk, "Pomiar odporności urza̧dzeń informatycznych na promieniowane pole elektryczne o czȩstotliwości radiowej w zakresie (80–1000) MHz," Przegla̧d Elektrotechniczny (Electrical Review), No. 86, 165-167, 2010.        Google Scholar

12. Przesmycki, R., "Measurement and analysis of compromising emanation for laser printer," PIERS Proceedings, Guangzhou, August 25–28, 2014.        Google Scholar

13. Przesmycki, R., L. Nowosielski, M. Bugaj, and K. Piwowarczyk, "Analiza emisji promieniowanej wspóÃlczesnych urza̧dzeń informatycznych," Przegla̧d Elektrotechniczny (Electrical Review), No. 2, 4-6, 2012.        Google Scholar

14. Przesmycki, R., L. Nowosielski, M. Bugaj, and K. Piwowarczyk, "Pomiar absorpcji materiaÃlów pochÃlaniaja̧cych fale elektromagnetyczne," Przegla̧d Elektrotechniczny (Electrical Review), No. 2, 33-35, 2012.        Google Scholar

15. Nowosielski, L, Rafa Przesmycki, and M Wnuk, "The laboratory stand for conducted emissions measurement in accordance with the military standard," 2010 IEEE International Symposium on Electromagnetic Compatibility, 275–278, July 2010.
doi:10.1109/isemc.2010.5711284        Google Scholar

16. Przesmycki, R. and P. Skokowski, "Dual band microstrip antenna," PIERS Proceedings, Guangzhou, August 25–28, 2014.        Google Scholar

17. Przesmycki, R., M. T. Wnuk, L. Nowosielski, K. Piwowarczyk, and M. Bugaj, "Analysis of the radiated emissions of IT equipment," PIERS Proceedings, Moscow, Russia, August 19–23, 2012.        Google Scholar

18. Przesmycki, R., M. T. Wnuk, L. Nowosielski, K. Piwowarczyk, and M. Bugaj, "The conducted and radiated emission levels from IT devices," PIERS Proceedings, Kuala Lumpur, Malaysia, March 27–30, 2012.        Google Scholar

19. Przesmycki, R., M. T. Wnuk, M. Bugaj, and K. Piwowarczyk, "Analiza metod pomiarowych tÃlumienności torów w.cz," Przegla̧d Elektrotechniczny (Electrical Review), No. 2, 17-19, 2012.        Google Scholar

20. Wnuk, M., W. Kolosowski, M. Amanowicz, and R. Dufrene, "Analysis of surface waves in microstrip array," IEEE VTS 53rd Vehicular Technology Conference, Spring 2001. Proceedings (Cat. No.01CH37202), Vol. 1, 224–227, 2006.
doi:10.1109/vetecs.2001.944836        Google Scholar

21. Wnuk, M. T., M. Bugaj, R. Przesmycki, L. Nowosielski, and K. Piwowarczyk, "Wearable antenna constructed in microstrip technology," PIERS Proceedings, Kuala Lumpur, Malaysia, March 27–30, 2012.        Google Scholar