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References TRENTINI, G. V.: Bündelung elektrischer Wellen durch Leitscheiben, Z. angew. Physik 6 No. 10 (1954), 462-470. EHRENSPECK, H. W.: The Short Backfire Antenna, Proc. IEEE 53 No. 8 (1965), 1138-1140. KUMAR, A.—HRISTOV, H. D.: Microwave Cavity Antennas, Artech House, Norwood, MA, 1989. FUJIMOTO, K.—JAMES, J. R.: Mobile Antenna Systems Handbook, Second Edition, Artech House, Norwood, MA, 2001. KALOI, C. M.—HATFIELD, D.—SIMON, P.: Microstrip Backfire Antenna, Proceedings IEEE AP-S Symposium, 1981, pp. 343-346. BALANIS, C. A.: Modern Antenna Handbook, A

References [1] *** ANSYS CFX Release 11.0-Solver Theory Guide, ANSYS Inc., 2006; [2] T. Gh. Cioara, L. Bereteu, Determination of wind-induced dynamic loads in the structure of a parabolic antenna, Proceedings of the X-th conference on mechanical vibration , Scientific Bulletin of the „Politehnica” University of Timişoara, Tom 47 (Supplement) (2002) 61; [3] D. Simoiu, Theoretical and Experimental Studies on Mechanical Structures Loads Induced by Wind. Application on Parabolic Dish Antenna ”. PhD Thesis, University “Politehnica” of Timişoara, ISBN 978

References [1] Y. Wang, L. Li, B. Wang, and L. Wang, A body sensor network platform for in-home health monitoring application, Proceedings of the 4th International Conference on Ubiquitous Information Technologies & Applications (2009), 1-5. [2] N. H. M. Rais, P. J. Soh, F.Malek, S. Ahmad, N.B.M. Hashim, and P.S Hall, A review of wearable antenna, Loughborough Antennas & Propagation Conference, (2009), 225-228. [3] J. Lilja and P. Salonen, Textile material characterization for softwear antennas, MILCOM’09 Proceedings of the 28th IEEE conference on Military

R eferences [1] Leonardo B. Campos, Carlos E. Cugnasca, “Applications of RFID and WSNs technologies to Internet of Things”, RFID 2014 IEEE Brasil , pp. 19-21, 2014 [2] L. Yang, A. Rida, R. Vyas, and M. M. Tentzeris, “RFID Tag and RF Structure on a Paper Substrate Using Inkjet-Printing Technology”, Microwave Theory and Techniques, IEEE Transactions on Volume 55, Issue 12, Part 2, pp. 2894-2901, Dec. 2007 [3] J. Volakis, Antenna engineering handbook, 1st ed. London: McGrawHill, 2007. [4] S. J. Orfanidis, „Electromagnetic Waves and Antennas”, Rutgers University

References [1] D. Simoiu, “Theoretical and Experimental Studies on Mechanical Structures Loads Induced by Wind. Application on Parabolic Dish Antenna”. PhD Thesis, University “Politehnica” of Timişoara 2008, ISBN 978-973-625-645-5. Politehnica Press. [2] T. Cioara, First results of the USP integrated sound probe application to the 3D vibration measurements on parabolic surface antenna, University Politehnica of Timisoara, internal report, 2006 [3] T. Cioara, L. Bereteu, Determination of wind-induced dynamic loads in the structure of a parabolic antenna

R eferences [1] R. C. Hansen, “Fundamental Limitations in Antennas”, Proc. Of the IEEE, pp 170-182, Vol 69 Issue 2, February 1981. [2] High Sierra SideKick, https://www.hamcq.com . [3] Patent of High_Q antenna, http://www.freepatentsonline.com , patent number: 9065178. [4] The Java script for quarter antenna calculator, http://m0ukd.com . [5] C.A. Balanis, Antenna Theory – Analysis and design, A John Wiley & Sons, Inc., 2005. [6] Chu, L. J., “Physical limitation of omni-directional antennas”, Journal of Applied Physics, December 1948. [7] H. Wheeler, “Small

References [1] Kaur, P., Aggarwal, S.K. & De, A. “ Performance Enhancement Of Rectangular Microstrip Patch Antenna Using Double H Shaped Metamaterial ” Radioelectronics And Communications Systems, Vol.59, NO.11, 2016. [2] Singh, A., Aneesh, M., Kamakshi, K. Et Al. “ Circuit Theory Analysis Of Aperture Coupled Patch Antenna For Wireless Communication ” Radioelectronics And Communications Systems, Vol.61, No.4, 2018. [3] Waihenya, N. “ Patch antenna for the 2.4 GHz ISM band ” Graduate Project, University of Nairobi, Kenya, 2015. [4] Harish, A.R., and Sachidananda

References 1. E. Ochieng, “ A 2.4GHz slot antenna array”, Graduation Project, University of Nairobi, Kenya, 2016. 2. J. Kim, and C. Ahn,” Small dual-band slot antenna using capacitor loading”, Microwave and Optical Technology Letter, Vol.59, Issue 9, pp. 2126-2131, 2017. 3. S. Kulkarni, and V. Kasabegoudar,” Bandwidth enhancement of compact circular slot antenna for UWB applications”, Global Journal of Researches in Engineering (F), Vol.17, Issue 1, Version 1.0, 2017. 4. A Parvathy, and M. Thomaskutty, “ A printed tree fractal based cross slot antenna for 2.45GHz

. 193-196, doi:10.15199/48.2017.03.45. [4] M. Márton, Ľ. Ovseník, J. Turán, M. Špes, “Design of antenna in program environment FEKO” In: Annals of Faculty Engineering Hunedoara - International Journal of Engineering. Vol. 15, no. 1, p. 169-174. - ISSN 1584-2665, 2017 [5] J. Tóth, Ľ. Ovseník, J. Turán, “Free space optics experimental system-long term measurements and analysis”, Acta Electrotechnica et Informatica. 2015. Vol. 15, no 2 (2015), pp.26-30 [6] J. Zhao, S. Zhao, W. Zhao, Y. Liu, X. Li, “Performance of mixed RF/FSO systems in exponentiated Weibull distributed

R eferences [1] T. A. Milligan, Modern antenna design , 2nd edition, 2005. [2] C. A. Balanis, Antenna Theory: Analysis and Design , 3rd edition, Canada, 2005. [3] W. L. Stutzman and G. A. Thiele, Antenna Theory and Design , 3rd edition, pp. 306–308, 2012. [4] A. Osama and A. R. Sebak, “Mutual Coupling Effect on Ultrawideband Linear Antenna Array Performance”, International Journal of Antennas and Propagation , vol. 2011, Article ID 142581. [5] Numerical Methods in FEKO. Online: https:/www.altair.com/RelatedCaseStudy.aspx?id=7172 .