فهرست:
فصل اول : مقدمه
1-1-آنتن میکرو استریپ.. 2
1-1-1-موج بر روی آنتن میکرو استریپ.. 3
-2-1-1 امواج سطحی.. 3
-3-1-1امواج نامتراکم. 5
-4-1-1امواج هدایت شونده 5
1-1-5- مشخصات آنتن میکرو استریپ.. 6
-2-1فرامواد. 6
1-2-1- مواد ENG.. 10
1-2-2- مواد MNG.. 11
1-2-3- موادDNG.. 13
1-2-4- کاربرد فرامواد. 16
1-3- الگوریتم بهینه سازی تجمع ذرات.. 17
1-4-اهداف پروژه 21
فصل دوم : مباحث کلی آنتن میکرواستریپ
2-1- مقدمه. 23
2-2- مزایا و معایب.. 25
2-3- روش های تغذیه. 26
2-3-1- تغذیه به روش خط میکرو استریپ.. 26
2-3-2- کابل هم محور 27
2-3-3- تغذیه به روش تزویج روزنه ای.. 28
2-3-4- تغذیه به روش تزویج الکترو مغناطیسی.. 29
2-4- روش های تحلیل آنتن میکرو استریپ.. 30
2-4-1- مدل خط انتقال. 31
2-4-2- مدل حفره تشدید. 34
2-5- الگوی تشعشعی.. 37
2-6- بازده تشعشعی.. 39
2-7- پهنای باند. 41
2-8- امپدانس ورودی.. 42
فصل سوم : مباحث کلی فرامواد
3-1- مقدمه. 45
3-2- انتشار امواج در مواد چپ گرد. 46
3- 3- چگالی انرژی و سرعت گروه 48
3-4- ضریب شکست.. 50
3-5- خواص دیگر فرامواد. 51
3-5-1- اثر داپلر معکوس... 51
3-5-2- تشعشع چرنکوف بازگشتی.. 52
3-6- ضرایب انتقال و انعکاس... 54
3-6-1- محاسبه ضرایب انتقال و انعکاس در وجه مشترک.. 54
3-6-2- محاسبه ضرایب انتقال و انعکاس تیغه فرامواد. 56
3-7- کاربرد فرامواد در آنتن.. 57
3-7-1- استفاده از فرامواد به عنوان رولایه آنتن میکرو استریپ.. 58
فصل چهارم : مباحث کلی استخراج پارامترهای محیطی فرامواد
4-1- مقدمه. 66
4-2- روش Smith. 66
4-3- روش Ziolkowski 69
4-4- روش Nicolson Ross Weir. 71
4-5- کاربرد روش های استخراج پارامترهای محیطی.. 73
4-5-1 سیم باریک.. 73
4-5-2- SRR.. 75
4-5-3 ترکیب سیم باریک و SRR.. 77
فصل پنجم : مباحث کلی الگوریتم بهینه سازی تجمع ذرات
5-1- مقدمه. 83
5-2- ساختار الگوریتم تجمع ذرات.. 84
5-3- تعیین پارامترهای الگوریتم بهینه سازی تجمع ذرات.. 90
5-4- شرایط مرزی.. 96
5-5- کاربرد. 99
فصل ششم : مدلسازی
6-1- مقدمه. 103
6-2- ساختار فراماده اول. 105
6-3- ساختار فراماده دوم. 109
6-4- ساختار فراماده سوم. 114
6-5- ساختار فراماده چهارم. 118
فصل هفتم : نتایج
7-1- مقدمه. 124
7-2- طراحی آنتن میکرواستریپ با استفاده از ساختار فراماده اول. 125
7-3- طراحی آنتن میکرواستریپ با استفاده از ساختار فراماده دوم. 129
7-4- طراحی آنتن میکرواستریپ با استفاده از ساختار فراماده سوم. 133
7-5- طراحی آنتن میکرواستریپ با استفاده از ساختار فراماده چهارم. 137
7-6- ساخت آنتن میکرواستریپ با استفاده از ساختار فراماده اول. 141
فصل هشتم : نتیجهگیری و پیشنهادات
8-1- نتایج. 146
8-2- پیشنهادات.. 147
مراجع. 148
منبع:
REFERENCES
Alu, A., Bilotti, F., Engheta, N., and Vegni, L. (2007). “Subwavelength, compact, resonant patch antennas loaded with metamaterials”, IEEE Transactions on Antennas and Propagation, Vol. 55, No. 1, : 13–25.
Alu, A., Bilotti, F., Engheta, N., and Vegni, L.(2007). “Subwavelength planar leaky-wave components with metamaterial bilayers”, IEEE Transactions on Antennas and Propagation, Vol. 55, No. 3, : 882–891.
Andryieuski, A., Malureanu, R., Lavrinenko, A. V.(2009). "Wave propagation retrieval method for metamaterials: unambiguous restoration of effective parameters", Phys. Rev. B , Vol. 80, No. 19, : 193101-193106.
Attia, H.,and Rahahi, O. M.(2008). “EBG Superstrate For Gain and Bandwidth Enhancement Of Microstrip Array Antenns”, In Proceeding of IEEE AP-SInt.Symp. AntennaPropagate, SanDiego, CA,USA.
Balanis, C . A.(1997). “ Antenna Theory, Analysis and Design” , John Wiley & Sons, ISBN: 0-471-59268-4.
Behera, S. K. (2005). “Novel Tuned Rectangular Patch Antenna As a Load for Phase Power Combining”, P h. D Thesis, Jadavpur University, Kolkata, India.
Bilotti, F., Alu, A., and Vegni, L. (2008). “Design of miniaturized metamaterial patch antennas with mu-negative loading”, IEEE Transactions on Antennas and Propagation, Vol. 56, No. 6, : 1640–1647.
Belov, P. A., Hao, Y., and Sudhakaran, S.(2006). “Sub wavelength microwave imaging using an array of parallel conducting wires as a lens”, Phys. Rev. B , Vol. 73, No. 3, : 33108-33112.
Caloz, C., and Itoh, T.(2003) “Microwave applications of novel metamaterials,” In Proc. Int. Electromagnetics in Advanced Applications Conf., Turin, Italy.
Caloz, C., and Itoh, T.(2005) “Electromagnetic Metamaterials: Transmission Line Theory and Microwave Applications.” John Wiley & Sons, Inc., ISBN: 0-471-60146-3.
Carlisle, A., and Doizier, G.(2001). “An off- the-shelf PSO”, In Proc Workshop Particle Swarm Optimization, Indianapolis, IN,USA.
Chainmool, S., Chung, K. L., and Akkaraekthalin, P.(2009). “A 2.45GHz WLAN High Gain Antenna Using A Metamaterial Reflecting Surface”, Intern Symp., on Antennas and Propagation.
Chaimool, S.,Chung, K. L., and Akkaraekthalin, P.(2010). ”Simultaneous gain and bandwidth enhancement of a sngle feed circularly polarized microstrip patch antenna using a metamaterial trial reflective surface”, Progress In Electromagnetics Research B, Vol.22, No. 5, : 23-37.
Chen, X., Grzegorczyk, T. M. Wu, B. I., Pacheco Jr, J., and Kong, J. A.(2004) "Robust method to retrieve the constitutive effective parameters of metamaterials", Phys. Rev. B , Vol. 70, No. 1, : 16608-16612.
Clerc, M., and Kennedy, J.(2002). “The particle swarm-explosion, stability, and convergence in a multidimensional complex space”, IEEE Trans. Evol. Comput. Vol. 6, No. 1, :58-73.
Collin, R. E. (1990). “Field Theory of Guided Waves” IEEE Press, ISBN: 0-87942-237-0.
Eberhart, R. C., and Shi, Y. (1998). “Evolving artificial neural networks”, In Proc.1998 Int. Conf. Neural Networks and Brain, Beijing, P.R.C.
Eberhart, R. C., and Shi, Y.(2001). “Particle swarm optimization: developments, applications and resources”, In Proc. 2001 Congr. Evolutionary Computation, USA.
Eleftheriades, G. G. V., Iyer, A. K., and Kremer, P. C. (2002). “Planar negative refractive index media using periodically L–C loaded transmission lines”, IEEE Trans. Microw. Theory Tech. ,Vol. 50, No. 12, : 2702–2712.
Engheta, N., and Ziolkowski, R. W. (2006). “ Metamaterials physics and engineering explorations”, John Wiley & Sons, Inc., ISBN: 0-471-76102-0.
Enkrich, C., Wegener, M., Linden, S., Burger, S., Zschiedrich, L., Schmidt, F., Zhou, J., Koschny, T., and Soukoulis C.M. (2005). “Magnetic Metamaterials at Telecommunication and Visible Frequencies”, Physical Review Letter, Vol.95, No.20, : 1901-1905.
Enoch, S.,Tayeb, G., Sabouroux, P., Guérin, N., and Vincent, P.(2002). “A metamaterial for directive emission”, Physical Review Letters, Vol. 89, No. 21, : 213902, 2002.
Freire, M. J., and Marque´s, R.(2005). “Planar magneto inductive lens for three-dimensional subwavelength imaging” ,Appl. Phys. Lett., Vol. 86, No.18 , : 182505-182507.
Foroozesh, A., and Shafai, L.(2010). “Investigation Into The Effects of The Patch Type FSS Superstrateon The High Gain Cavity Resonance Antenna Design”, IEEETrans,Antenna Propagate,Vol.58, No.2, : 258-270.
Gardiol, F. E. (1995) “Broad band Patch Antennas ”, Artech House, Inc. ISBN: 1-58053-244-6 .
Garg, R., Bhartia, P., Bahl I., and Ittipiboon A. (2000). “Microstrip Antenna Design Handbook”, Artech House, ISBN: 0-8900-6513-6.
Hammerstad, E.O.(1975). “Equations for microstrip circuits design” Proc. Fifth European Microwave Conf, Germany.
Harrington, R. F.(1961). “Time-Harmonic Electromagnetic Fields”, McGraw-Hill, ISBN: 0-4712-0806-8.
Ikonen, P. M. T., Maslovski, S. I., Simovski, C. R., and Tretyakov, S. A.(2006). “On articial magnetodielectric loading for improving the impedance bandwidth properties of microstrip antennas”, IEEE Transactions on Antennas and Propagation, Vol. 54, No. 6, : 1654– 1662.
Ikonenand, P., and Tretyakov, S.(2007). “Commentson design and modeling of patch antenna printed on magnetodielectric embedded-circuit metasubstrate", IEEE Transactionson Antennas and Propagation, Vol. 55, No. 10, : 2935–2936.
Jackson, D. R., and Williams, J. T.(1991). “A comparison of CAD models for radiation from rectangular microstrip patches”, Intl. Journal of Microwave and Millimeter Wave Computer Aided Design, Vol. 1, No. 2, : 236-248.
Jackson, D. R., Long, S . A., Williams, J. T., and Davis, V. B.(1997). “Computer aided design of rectangular microstrip antennas”, John Wiley, ISBN: 0-471-04421-0.
Jaksic, V., Dalarsson, N., and Maksimović, M.( 2006). “Negative Refractive Index Metamaterials: Principles and Applications", Microwave Review, Vol. 12, No.1, : 36-49.
James, J. R., Hall, P. S., and Wood, C.(1981). ”Microstrip antennas theory and design” Peter Perigrinus, ISBN: 1-4471-1186-3.
Jokanovic, B., Geschke, R. H., Beukman, T. S., and Milosevic, V.(2010). ”Metamaterials: characteristic, design and microwave applications”, SAIEE Africa research journal, Vol.101, No. 3, : 82-91.
Kalsarakis, N., Konstantinidis, G., Kostopoulos, A., Penciu, R. S., Gundogdu, T. F., Kafesaki, M., Economou, E. N. Koschny, T., and Soukoulis, C. M. (2005). “Magnetic Response of Split-Rong Resonators in The Far Infrared Frequency Regime”, Optic Letters, Vol.30, No.11, : 1348-1350.
Kennedy , J., and Eberhart R. C.,(1995). “Particle swarm optimization”, In Proc. IEEE Conf. Neural Networks IV, Piscataway, USA.
Kennedy , J., and Spears, W. M.(1998). “Matching algorithms to problems: an experimental test of the particle swarm and some genetic algorithms on multi modal problem generator” , In Proc. IEEE Int. Conf. Evolutionary Computation, USA.
Kong, J. A. (2000).” Electromagnetic Wave Theory”, EMW Publishing, ISBN: 1-4020-1102-3.
Kong, J. A.(2002). "Electromagnetic wave interaction with stratified negative isotropic media", Progress In Electromagnetics Research, Vol. 35, No. 12, : 1-52.
Kshetrimayum, A., Singh, M., and Behera, S. K. (2010). “Design of square patch microstrip antenna for circular polarization using IE3D software”, Ph.D. dissertation, Electronic and communication Engineering national institute of technology, Rourekela, Orissa, India.
Krowne, C. M. (2004). “Left-handed material use in monoatomic & III-V ICs”, III-Vs Review, Vol. 17, No. 3, : 26-27.
Lai, A., Itoh, T., and Caloz, T.(2004). "Composite right/left-handed transmission line metamaterials" , Microwave Magazine, IEEE , Vol.5, No. 3, : 34- 50.
Lee, K. F. and Chen, W. (1997). “Advances in Microstrip and Printed Antennas”, John Wiley, ISBN: 0-471-04421-5.
Limaye, A. U. (2007). “Size reduction of microstrip antennas using left-handed materials realized by complementary split-ring resonators”, IEEE AP-S International Symposium Honolulu, Hawaii, USA.
Linden, S., Enkrich, C., Wagener, M., Zhou, J., Koschny, T., and Soukoulis, C. M.(2004).“Magnetic Response Of Metamaterial at 100 Terahertz”, Science, Vol.306, No.5700, : 1351-1353.
Lo, Y. T., Solomon, D., and Richards, W. F.(1979). “Theory and experiment for microstrip antennas”, IEEE Trans. Antennas Propagation, Vol. 27, No.2, : 137-145.
Lovat, G., Burghignoli, P., Capolino, F., Jackson, D. R. and Wilton, D. R.(2006). “Analysis of directive radiation from a line source and in a metamaterial slab with low permittivity”, IEEE Transactions on Antennas and Propagation, Vol. 54, No. 3, : 1017–1030.
Lu, Z., Chen, C., Schuetz, C.A., Shi, S., Murakowski, J.A., Schnieder, G. J. ,and Prather, D.W.(2005). “Subwavelength imaging by a flat cylindrical lens using optimized negative refraction”, Applied Physics Letters, Vol.87, No.09, :19071-19073.
Mahmoud, S. F.(2004). “A new miniaturized annular ring patch resonator partially loaded by a metamaterial ring with negative permeability and permittivity”, IEEE Antennas and Wireless Propagation Letters, Vol. 3, No.1, : 19–22.
Majid, H. A., Rahim, M. K.,and Masri, T.(2009) “Microstrip antenna’s gain enhancement using left handed metamaterial structure”, Progress In Electromagnetics Research V, Vol.8, No.3, :235-247.
Markos, P., and Soukoulis, C.M.(2003). “Transmission Properties and Effective Electromagnetic Parameters of Double Negative Metamaterials”, Optics Express , Vol. 11, No. 7, : 649-661.
Marques, R., Martin, F., and Sorolia, M.(2007).”Metamaterials with negative parameters, theory, design and microwave application” John Wiley & Sons, Inc., ISBN: 0-471-74582-2.
Mosallaei, H., and Sarabandi, K.(2007). “Design and modeling of patch antenna printed on magneto-dielectric embedded-circuit metasubstrate”, IEEE Transactions on Antennas and Propagation, Vol. 55, No. 1, : 45–52.
Mosallaei, H. and Sarabandi, K.(2007). “Reply to "comments on ’design and modeling of patch antenna printed on magneto-dielectric embedded-circuit metasubstrate", IEEE Transactions on Antennas and Propagation, Vol. 55, No. 10, : 2936–2937.
Nicolson, A. M., and Ross, G. F.(1970). "Measurement of the intrinsic properties of materials by time-domain techniques", IEEE Trans. Instrum. Meas., Vol. 19, No.11, : 377-382.
Ozcan, E., and Mohan, C. K.(1999). “Particle swarm optimization: surfing the waves”, In Proc. 1999 Congr. Evolutionary Computation, Washington, DC,USA.
Palandoken, M., Grede, A., and Henke, H.(2009). "Broadband Microstrip Antenna With Left Handed Metamaterials”, Antennas and Propagation, IEEE Transactionsion, Vol.57, No.2, :331-338.
Pendry, J.B.(1996). “Calculating Photonic Band-Structure”, J. Phys., Vol. 8, No. 9 ,: 1085, 1996.
Pendry, J. B. , Holden, A. J., Robbins, D. J., and Stewart, W. J.(1998). “Low-frequency plasmons in thin wire structures” ,Phys. Condens.Matter, Vol. 10,No. 22, : 4785–4809.
Popa, B. I., and Cummer, S. A.(2005). "Determining the effective electromagnetic properties of negative–refractive–index metamaterials from internal elds", Phys. Rev. B , Vol. 72, No. 16,:165102-165106.
Pozar, D. M. (1986). “A reciprocity method of analysis for printed slot and slot- coupled microstrip antennas” , IEEE Trans. Antennas and Propagation, Vol. 34, No.12, : 1439-1446.
Pozar, D. M. and Schaubert, D. H. (1995). “Microstrip Antennas: The Analysis and Design of Microstrip Antennas and Arrays”, Wiley-IEEE Press, ISBN: 0-7803-1078-0.
Pues, H. , and Van Capelle, A.(1984). “Accurate transmission line model for the rectangular microstrip antenna” , Proc. IEEE, Vol. 131, No. 6, : 334 -340.
Raether, H.(1980).” Excitation of Plasmons and Interband Transitions by Electrons, “ Springer, ISBN: 0-387-17363-3.
Rahmat-Sami,Y.(2007). “Particle Swarm Optimization (PSO) in Engineering Electromagnetic: A Nature-Inspired Evolutionary Algorithm”, IEEE Trans, Vol.40, No.3, :177-182.
Robinson J., Sinton, S., and Rahmat-Samii, Y.(2002). “Particle swarm, genetic algorithm, and their hybrids: optimization of a profiled corrugated horn antenna,” In Proc. IEEE Int. Symp. Antennas Propagation, San Antonio, USA.
Robinson, J., and Rahmat-Sami Y.(2004). “Particle Swarm Optimization in electromagnetics”, IEEE Transaction on antennas and propagation, Vol.52, No. 2, :397-407.
Shamonina, E., Kalinin, V. A., Ringhofer, K. H., and Solymar, L. (2002) “Magneto-inductive waves in one, two and three dimensions” , J. Appl. Phys. , Vol. 92,No. 10, : 6252 – 6261.
Shelby, R.A., Smith, D.R., Nemat-Nasser, S.C., and Schultz, S.(2001). "Microwave transmission through a two-dimensional, isotropic, left-handed metamaterial", Appl. Phys. Lett., Vol. 78, No.4, : 489-491.
Shelby, R. A., Smith, D. R., and Schultz, S. (2001). “Experimental verification of a negative index of refraction”, Science, Vol. 292, No. 5514, : 77–79.
Shen, C.(2006). “Wave Propagation through Photonic Crystal Slabs: Imaging and Localization”, PhD Dissertation , University of Groningen,Netherland.
Sihvola, A.(2007). “Metamaterials in electromagnetic”, Elsevier, Metamaterials, Vol. 1, No.1, :2-11.
Smith, D. R., Padilla, W. J., Vier, D. C., Nemat-Nasser, S. C., and Schultz, S.(2000). "Composite Medium with Simultaneously Negative Permeability and Permittivity", Phys.Rev. Lett., Vol. 84,No. 18, : 4184-4187.
Smith, D. R., Schultz, S., Markos, P., and Soukoulis, C. M.(2002). "Determination of effective permittivity and permeability of metamaterials from reection and transmission coefcients" , Phys. Rev. B , Vol. 65, No. 19, :195104-195109.
Smith, D. R., and Pendry, J. B.(2006). "Homogenization of metamaterials by eld averaging" , J. Opt. Soc. Am. B , Vol. 23, No. 3: 391–403.
Sodha, M. S., and Shrivastava, N. C.(1981). “Microwave Propagation in Ferrimagnetics”, Plenum Press, ISBN: 0-3064-0716-7.
Tonn, D. A., and Bansal, R.(2002). “Practical considerations for increasing radiated power from an electrically small antenna by application of a double negative metamaterial”, In IEEE Antennas and Propagation Int. Symp. (AP-S) and USNC/URSI Meeting, Washington, DC, USA.
Tretyakov, S. A., and Ermutlu, M. E.(2005). “Modeling of patch antennas partially loaded with dispersive backward-wave materials”, IEEE Antennas and Wireless Propagation Letters, Vol. 4, No.1, : 266–269.
Valentine, J., Zhang, S., Zentgraf, T.,Ulin–Avila, E., Genov, D. A., Bartal, G., and Zhang, X.(2008)."Three–dimensional optical metamaterial with a negative refractive index" , Nature, Vol. 455, No.7211, : 376–379, 2008.
Veselago, V. G. (1968). “The electrodynamics of substances with simultaneously negative values of ε and µ”, Soviet Physics Uspekhi, Vol. 10, No. 4, :509–514.
Vettikalladi, H., Lafond, Q., and Himdi, M.(2009). “High Efficient and High Gain Superstrate Antenna for 60GHz Indoor Communication”, IEEE Antenna Wireless Propagate,Vol.8,No.2, : 1422-1425.
Wakatsuchi, H.(2011). ” Computational studies of the electromagnetic properties of metamaterials and applications”, Ph.D. dissertation, Dept. Electrical and electronic Eng., Univ. Nottingham, United Kingdom.
Wang, J., Qu, S., Xu, Z., Ma, H., Xia, S., Yang, Y., Wu, X., Wang, Q., and Chen, C.(2010). "Normal–incidence left–handed metamaterials based on symmetrically connected split–ring resonators" , Phys. Rev. E, Vol. 81, No. 3, : 036601-036606.
Wiltshire, M. C. K., Pendry, J. B., Young, I. R., Larkman, D. J., Gilderdale, D. J., and Hajnal J. V.(2001). “Microstructured magnetic materials for RF flux guides in magnetic resonance Imaging” ,Science, Vol. 291, No.2, : 849 – 851.
Yen, T.J., Padilla, W.J., Fang, N., Vier, D.C., Smith, D.R., Pendry J.B., Basov, D.N., and Zhang, X. (2004). “Terahertz Magnetic Response From Artificial Materials”, Science, Vol.303, No.5700, : 1494-1496.
Ziolkowski, R. W., and Kipple, A. D.(2003). “Application of double negative materials to increase the power radiated by electrically small antennas”, IEEE Transactions on Antennas and Propagation, Vol. 51, No. 10, : 2626–2640.
Ziolkowski, R. W.(2003). "Design, fabrication, and testing of double negative metamaterials", IEEE Trans. Antennas Propagat., Vol. 51, No. 7, : 1516–1529.
Ziolkowski, R. W., and Erentok, A.(2006). “Metamaterial-based ecient electrically small antennas”, IEEE Transactions on Antennas and Propagation, Vol. 54, No. 7, : 2113–2130.