references - inflibnetshodhganga.inflibnet.ac.in/bitstream/10603/20484/16/16_references.pdf[54]...

16
209 REFERENCES [1] Christos G. Christodoulou, Youssef Tawk, Steven A. Lane, and Scott R. Erwin “Reconfigurable Antennas for Wireless and Space Applications” Proceedings of the IEEE Vol. 100, No. 7, July 2012. [2] D. Schaubert, B “Frequency-agile polarization diversity microstrip antennas and frequency scanned arrays” U.S. Patent 4 367 474, Jan. 1983. [3] Joshua D. Boerman and Jennifer T. Bernhard Performance Study of Pattern Reconfigurable Antennas in MIMO Communication Systems” IEEE Transactions On Antennas And Propagation, VOL. 56, NO. 1, January 2008. [4] H. T. Friis, C. B. Feldman, and W. M. Sharpless, “The Determination of the Direction of Arrival of Short Radio Waves,” Proceedings of the Institute of Radio Engineers, January 1934, pp. 47-78. [5] E. Bruce and A. C. Beck, “Experiments with Directivity Steering for Fading Reduction,” Proceedings of the Institute of Radio Engineers, April 1935, pp. 357-371. [6] H. T. Friis, and C. B. Feldman, “Multiple Unit Steerable Antenna for Short- Wave Reception,” Proceedings of the Institute of Radio Engineers, July 1937, pp. 841-917. [7] H. T. Friis and W. D. Lewis, “Radar Antennas,” The BellSystem Technical Journal, April 1947, pp. 219-317. [8] R. L. Haupt, Antenna Arrays: A Computational Approach, New York, Wiley, 2010. [9] E. W. Matthews, C. L. Cuccia, and M. D. Rubin, “Technology Considerations for the Use of Multiple Beam Antenna Systems in Communications Satellites,” IEEE Transactions on Microwave Theory and Techniques, December 1979, pp. 998-1004. [10] A. D. Monk and P. J. B. Clarricoats, “Adaptive Null Formation with a Reconfigurable Reflector Antenna,” Proceedings of the Institute of

Upload: others

Post on 14-Apr-2020

4 views

Category:

Documents


0 download

TRANSCRIPT

Page 1: REFERENCES - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/20484/16/16_references.pdf[54] Brian Edward and Daniel Rees,” A broadband printed dipole with integrated balun”,

209

REFERENCES

[1] Christos G. Christodoulou, Youssef Tawk, Steven A. Lane, and Scott R.

Erwin “Reconfigurable Antennas for Wireless and Space Applications”

Proceedings of the IEEE Vol. 100, No. 7, July 2012.

[2] D. Schaubert, B “Frequency-agile polarization diversity microstrip

antennas and frequency scanned arrays” U.S. Patent 4 367 474, Jan. 1983.

[3] Joshua D. Boerman and Jennifer T. Bernhard “Performance Study of

Pattern Reconfigurable Antennas in MIMO Communication Systems”

IEEE Transactions On Antennas And Propagation, VOL. 56, NO. 1,

January 2008.

[4] H. T. Friis, C. B. Feldman, and W. M. Sharpless, “The Determination of the

Direction of Arrival of Short Radio Waves,” Proceedings of the Institute of

Radio Engineers, January 1934, pp. 47-78.

[5] E. Bruce and A. C. Beck, “Experiments with Directivity Steering for

Fading Reduction,” Proceedings of the Institute of Radio Engineers, April

1935, pp. 357-371.

[6] H. T. Friis, and C. B. Feldman, “Multiple Unit Steerable Antenna for Short-

Wave Reception,” Proceedings of the Institute of Radio Engineers, July

1937, pp. 841-917.

[7] H. T. Friis and W. D. Lewis, “Radar Antennas,” The BellSystem Technical

Journal, April 1947, pp. 219-317.

[8] R. L. Haupt, Antenna Arrays: A Computational Approach, New York,

Wiley, 2010.

[9] E. W. Matthews, C. L. Cuccia, and M. D. Rubin, “Technology

Considerations for the Use of Multiple Beam Antenna Systems in

Communications Satellites,” IEEE Transactions on Microwave Theory and

Techniques, December 1979, pp. 998-1004.

[10] A. D. Monk and P. J. B. Clarricoats, “Adaptive Null Formation with a

Reconfigurable Reflector Antenna,” Proceedings of the Institute of

Page 2: REFERENCES - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/20484/16/16_references.pdf[54] Brian Edward and Daniel Rees,” A broadband printed dipole with integrated balun”,

210

Electrical Engineers Microwave Antennas and Propagation, 142, 3, June

1995, pp. 220-224.

[11] Kawasaki S., Itoh T.: ‘A slot antenna with electronically tunable length’.

Proc. IEEE AP-S Int. Symp., June 1991,pp. 130–133

[12] Peroulis D., Sarabandi K., Katehi L.P.B.: ‘Design of reconfigurable slot

antenna’, IEEE Trans. Antennas Propag., 2005, 53, (2), pp. 645–654

[13] Behdad N., Sarabandi K.: ‘Dual-band reconfigurable antenna with a very

wide tunability range’, IEEE Trans. Antennas Propag., 2006, 54, (2), pp.

409–416

[14] Behdad N., Sarabandi K.: ‘A varactor-tuned dual-band slot antenna’, IEEE

Trans. Antennas Propag., 2006, 54, (2), pp. 401–408

[15] Nikolaou S., Bairavasubramanian R., Lugo C., et al.: ‘Pattern and

frequency reconfigurable annular slot antenna using PIN diodes’, IEEE

Trans. Antennas Propag., 2006, 54, (2), pp. 439–448.

[16] Fries M., Grani M., Vahldieck R.: ‘A reconfigurable slot antenna with

switchable polarization’, Microw. Wirel. Compon. Lett., 2003, 13, (11), pp.

490–492.

[17] Boti M., Dussopt L., Laheurte J.M.: ‘Circularly polarized antenna with

switchable polarization sense’, Electron. Lett., 2000, 36, (18), pp. 1518–

1519

[18] Yang F., Rahmat-Samii Y.: ‘Patch antennas with switchable slots (PASS)

in wireless communications: concepts, designs and applications’, IEEE

Antennas Propag. Mag., 2005, 47,(2), pp. 13–29.

[19] Lai M.I., Wu T.Y., Hsieh J.C., Wang C.H., Jeng S.K.: ‘A compact pattern

reconfigurable antenna design for hand held wireless devices’. Proc. IEEE

AP-S Int. Symp., Honolulu, HA, June 2007, pp. 5223–5226.

[20] T. Koroˇsec, P. Ritoˇsa, and M. Vidmar, “Varactor-tuned microstrip-patch

antenna with frequency and polarization agility,” Electronics Letters, vol.

42, no. 18, pp. 1015–1016, 2006.

Page 3: REFERENCES - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/20484/16/16_references.pdf[54] Brian Edward and Daniel Rees,” A broadband printed dipole with integrated balun”,

211

[21] S. V. Hum and H. Y. Xiong, “Analysis and design of a differentially-fed

frequency agile microstrip patch antenna,” IEEE Transactions on Antennas

and Propagation, vol. 58, no. 10, pp. 3122–3130, 2010.

[22] C. R. White and G. M. Rebeiz, “Single- and dual-polarized tunable slot-

ring antennas,” IEEE Transactions on Antennas and Propagation, vol. 57,

no. 1, pp. 19–26, 2009.

[23] Y. Tawk, J. Costantine, and C. G. Christodoulou, “A varactor based

reconfigurable filtenna,” IEEE Antennas and Wireless Propagation Letters,

vol. 11, pp. 716–719, 2012.

[24] P. Ratajczak, J.-M.Baracco, and P. Brachat, “Adjustable high impedance

surface for active reflect array applications,” in Proceedings of the 2nd

European Conference on Antennas and Propagation (EuCAP ’07), pp. 1–6,

November 2007.

[25] F. Canneva, J. M. Ribero, and R. Staraj, “Tunable antenna for DVB-H

band,” in Proceedings of the 4th European Conference on Antennas and

Propagation (EuCAP ’10), pp. 1–3,April 2010.

[26] M. R. Hamid, P. Gardner, P. S. Hall, and F. Ghanem, “Switched band

Vivaldi antenna,” IEEE Transactions on Antennas and Propagation, vol.

59, no. 5, pp. 1472–1480, 2011.

[27] N. Haider, D. P. Tran, A. G. Roederer, and A. G. Yarovoy,

“Reconfigurable L/S band phased array,” Electronics Letters, vol.47, no.

23, pp. 1265–1266, 2011.

[28] N. Haider, D. P. Tran, and A. G. Yarovoy, “A new concept for frequency

reconfigurable phased-array element,” in Proceedings of the Antennas and

Propagation Conference (LAPC ’11), pp. 1–4, Loughborough, UK,

November 2011.

[29] Y. Li, Z. Zhang, W. Chen, and Z. Feng, “Polarization reconfigurable slot

antenna with a novel compact CPW-to-slotline transition for WLAN

Page 4: REFERENCES - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/20484/16/16_references.pdf[54] Brian Edward and Daniel Rees,” A broadband printed dipole with integrated balun”,

212

application,” IEEE Antennas and Wireless Propagation Letters, vol. 9, pp.

252–255, 2010.

[30] D. Piazza, N. J. Kirsch, A. Forenza, R. W. Heath, and K. R. Dandekar,

“Design and evaluation of a reconfigurable antenna array for MIMO

systems,” IEEE Transactions on Antennas and Propagation, vol. 56, no. 3,

pp. 869–881, 2008.

[31] D. Piazza, P. Mookiah, M. D’Amico, and K. R. Dandekar, “Experimental

analysis of pattern and polarization reconfigurable circular patch antennas

for MIMO systems,” IEEE Transactions on Vehicular Technology, vol. 59,

no. 5, pp. 2352–2362, 2010.

[32] J.Ollikainen, O. Kivek¨as, and P. Vainikainen, “Low-loss tuning circuits for

frequency-tunable small resonant antennas,” in Proceedings of the 13th

IEEE International Symposium on Personal, Indoor and Mobile Radio

Communications (PIMRC ’02), vol. 4,pp. 1882–1887, September 2002.

[33] T.-Y. Han and C.-T.Huang, “Reconfigurable monopolar patch antenna,”

Electronics Letters, vol. 46, no. 3, pp. 199–200, 2010.

[34] D. Peroulis, K. Sarabandi, and L. P. B. Katehi, “Design of reconfigurable

slot antennas,” IEEE Transactions on Antennas and Propagation, vol. 53,

no. 2, pp. 645–654, 2005.

[35] S.-X. Cao, X.-X.Yang, B. Gong, and B.-C.Shao, “A reconfigurable

microstrip antenna with agile polarization using diode switches,” in IEEE

International Symposium on Antennas and Propagation (APSURSI ’11),

pp. 1566–1569, July 2011.

[36] A. C. K. Mak, C.R. Rowell, and R. D. Murch, “Low-cost reconfigurable

landstorfer planar antenna array,” IEEE Transactions on Antennas and

Propagation, vol. 57, no. 10, pp. 3051–3061, 2009.

[37] S. Shelley, J. Costantine, C. G. Christodoulou, D. E. Anagnostou, and J. C.

Lyke, BFPGA-controlled switch-reconfigured antenna “IEEE Antennas

Wireless Propag.Lett., vol. 9, pp. 355–358, 2010.

Page 5: REFERENCES - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/20484/16/16_references.pdf[54] Brian Edward and Daniel Rees,” A broadband printed dipole with integrated balun”,

213

[38] Y. Tawk, J. Costantine, K. Avery, and C. G. Christodoulou,

“Implementation of a cognitive radio front-end using rotatable controlled

reconfigurable antennas,” IEEE Transactions on Antennas and

Propagation, vol. 59, no. 5, pp. 1773–1778, 2011.

[39] S. J. Mazlouman, A. Mahanfar, C. Menon, and R. G. Vaughan, “Square

ring antenna with reconfigurable patch using shape memory alloy

actuation,” IEEE Transactions on Antennas and Propagation, vol. 60, no.

12, pp. 5627–5634, 2012.

[40] J. T. Bernhard, E. Kiely, and G. Washington, “A smart mechanically

actuated two-layer electromagnetically coupled microstrip antenna with

variable frequency, bandwidth, and antenna gain, ”IEEE Transactions on

Antennas and Propagation, vol. 49, no. 4,pp. 597–601, 2001.

[41] Cetiner B.A., Jafarhani H., Qian J.Y., Yoo H.J., Grau A., Flaviis F.D.

‘Multifunctional reconfigurable MEMS integrated antennas for adaptive

MIMO systems’, IEEE Commun. Mag., 2004, 42,(12), pp. 62–70.

[42] Grau A., Lee M.J., Romeu J., Jafarkhani H., Jofre L., Flaviis F.D.:‘A

multifunctional MEMS-reconfigurable pixel antenna for narrowband

MIMO communications’. Proc. IEEE AP-S Int. Symp., Honolulu, HA, June

2007, pp. 489–492.

[43] Vaughan R.G., Andersen J.B.: ‘Antenna diversity in mobile

communications’, IEEE Trans. Veh. Technol., 1987, 36, (4), pp. 149–172.

[44] Dietrich C.B., Dietze K., Nealy J.R., Stutzman W.L.: ‘Spatial, polarization,

and pattern diversity for wireless hand-held terminals’, IEEE Trans.

Antennas Propag., 2001, 49, (9), pp. 1271–1281.

[45] J. T. Bernhard, Reconfigurable Antennas, San Rafael, CA, Morgan &

Claypool Publishers, 2007.

[46] J. T. Bernhard “Reconfigurable Antennas” Morgan & Claypool Publishers,

2007*.

Page 6: REFERENCES - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/20484/16/16_references.pdf[54] Brian Edward and Daniel Rees,” A broadband printed dipole with integrated balun”,

214

[47] Songnan Yang, Chunna Zhang, Helen K. Pan, Aly E. Fathy, and Vijay K.

Nair “Frequency-Reconfigurable Antennas for Multi radio Wireless

Platforms” IEEE microwave magazine, February 2009.

[48] R. Garg, P. Bhartia, I. Bahl, and A. Ittipiboon, Microstrip Antenna Design

Handbook, Artech House, 2001.

[49] Beena mole K.S “ Studies on Active Phased Array Antenna Elements”

Ph.D dissertation, Osmania University, Hyderabad, India, 2008.

[50] Hanyang Y.Wang, Michael J.Lancaster.,” Aperture coupled thin-film

superconducting meander antennas”, IEEE Trans. Antenna and

propagation, Vol.AP-47, No.5, May1999, pp.829-836.

[51] Jalil Rashed and Chen, ” A new class of resonant antenna”, IEEE Trans.

Antenna and propagation, Vol.AP-39, No.9, May1991, pp.1428-1430.

[52] P.S.Hall,” Microstrip linear array with polarization control”, IEE

proc.Vol.130, Pt.H,No.3, April 1983.

[53] C.Wood, P.S.Hall and J.R.James, ” Design of wideband circularly polarized

microstrip antennas and arrays”, International Conference on Antennas and

Propagation,IEE.pp.312-316,1978.

[54] Brian Edward and Daniel Rees,” A broadband printed dipole with

integrated balun”, Microwave Journal, May 1987,pp.339-344.

[55] M.Scott, ”A printed dipole for wide scanning array applications”,11th

International Conference on Antennas and Propagation, April 17-20,pp.37-

40,2001.

[56] Paul E. Mayes, "Frequency-Independent Antennas and Broad-Band

Derivatives Thereof', Proceedings of the IEEE, Volume: 80, Issue: 1,

Digital Object Identifier: 10.110915.119570, Publication Year: 1992,

Page(s): 103 – 112.

[57] M. C. Liang, K. C. Huang, M. L. Lo and S. A. Yang, "A Low Frequency

Tunable Broadband Design Using Printed Dual-Spiral C-Patch Antenna

Page 7: REFERENCES - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/20484/16/16_references.pdf[54] Brian Edward and Daniel Rees,” A broadband printed dipole with integrated balun”,

215

Strip", Antennas and Propagation Society International Symposium,2003.

IEEE, Volume: 4, Publication Year: 2003, Page(s): 540 – 543 vol.4.

[58] Chien-Jen Wang, "A Frequency-Reduction Scheme for Spiral Slot

Antenna", Antennas and Wireless Propagation Letters, IEEE, Volume: 1,

Digital Object Identifier: 1O.1109ILA WP.2002.807567, Publication Year:

2002, Page(s): 161 – 164.

[59] W. Curtis, "Spiral antenna," IRE Trans. Antenna and propagate, Vol. 8,

issue 3, pp. 298-306, May 1960.

[60] A. Mehta, D. Mirshekar-Syahkal and H. Nakano , "Beam adaptive single

arm rectangular spiral antenna with switches", Microwaves, Antennas and

Propagation, IEE Proceedings - Volume: 153 , Issue: 1, Digital Object

Identifier: 1O.1049/ip-map:20050045, Publication Year: 2006 , Page(s): 13

-18.

[61] Pozar, D. M., “Microstrip Antennas”, proc IEEE , Vol. 80, 1992, pp. 79-91.

[62] Zheng, J.X., and D. C. Chang, “End-Correction Network of a Coaxial Probe for

Microstrip patch Antennas”, IEEE Trans. On Antennas and Propagation, Vol.

AP-39, 1991, pp. 115-118

[63] Richards, W. E., et al., “Experimental and Theoritical Investigations of the

Inductances Associated With Microstrip Antenna Feed”, Electromagnetics, Vol.

3, No. 3-4, July-Dec. 1983, pp. 327-346.

[64] Abrele, J. T., and D. M. Pozar, “Analysis of Infinite Array of Probe-Fed

Rectangular Microstrip Antennas Using a Rigorous Feed Model”, Proc. IEE, Pt.

H, Vol. 136, 1989, pp. 110-119.

[65] Damiano, J. P., and A. Papiernik, “Survey of Analytical and Numerical Models

for Probe Fed Microstrip Antennas”, IEE Proc., Microwave Ant. Propagat., Vol.

141, 1994, pp. 15-22.

[66] Wu, C., et al., “Accurate Characterization of Planar Printed Antennas Using Finite

Difference Time-Domain Method”, IEEE Trans. On Antennas and Propagation,

Vol. AP-40, 1992, pp. 526-534.

[67] Hall, P. S., “Probe Compensation in Thick Microstrip Patches”, Electron.

Lett.,Vol. 23, 1987, pp. 606-607.

Page 8: REFERENCES - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/20484/16/16_references.pdf[54] Brian Edward and Daniel Rees,” A broadband printed dipole with integrated balun”,

216

[68] Vandenbosch, G. A. E., and A. R. Van de Capelle, “Study of the Capacitively Fed

Microstrip Antenna Element”, IEEE Trans. On Antennas and Propagation, Vol.

AP-42, 1994, pp. 1648-1652.

[69] Gupta, K. C, et al., “Microstrip Lines and Slot Lines”, 2nd

ed., Artech House,

Norwood, MA, 1996.

[70] James, J. R., and P. S. Hall (Eds.), “Handbook of Microstrip Antennas”, Peter

Peregrinus, London, UK, 1989.

[71] Reinex, A., and B. Jecko, “Analysis of Microstrip Patch Antennas Using Finite-

Difference Time-Domain Method”, IEEE Trans. On Antennas and Propagation,

Vol. AP-37,1989, pp. 1361-1369.

[72] P.N. Cummings, “Active Antenna Bandwidth Control Using

Reconfigurable Antenna Elements,” Ph.D dissertation, Virginia Polytechnic

Institute & State University, Blackburg, Virginia, 2003.

[73] T. Hubing, C. Su, H. Zeng and H. Ke, “Survey of Current Computational

Electromagnetics Techniques and Software”, Technical Report: CVEL-08-

011.2, 2008.

[74] User Guide “Momentum” Copyright © 1998-2004, Agilent Technologies.

[75] Balanis, C.A., Antenna Theory: Analysis and Design, 3rd ed., Wiley Inter

science, New York, 2005.

[76] D. M. Pozar, “Considerations for millimeter wave printed Antennas”, IEEE

Trans. Antennas Propagation Vol. AP-31, pp.740-747, 1983.

[77] Robert J. Mailloux, ‘Microstrip Array Technology’ IEEE Transactions on

Antennas and Propag, Vol. AP-29, NO.1, January 1981.

[78] K. R. Carver and J. W. Mink, “Microstrip antenna technology,” IEEE

Transactions on Antennas Propag, Vol. AP-29, pp. 2-24, Jan. 1981.

[79] Waterhouse, R., Printed Antennas for Wireless Communications, John

Wiley & Sons Inc,2007.

Page 9: REFERENCES - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/20484/16/16_references.pdf[54] Brian Edward and Daniel Rees,” A broadband printed dipole with integrated balun”,

217

[80] Loizeau. S, Sibille. A, “A Reconfigurable PIFA Antenna with Ultra

wideband Tuning”, Antennas and propagation,2007, EuCAP 11-16 Nov.

2007, pp 1-6, ISBN: 978-0-86341-842-6.

[81] N. Behdad and K. Sarabandi, "Dual-Band Reconfigurable Antenna with a

Very Wide Tunability Range,"IEEE Transactions on Antennas and

Propagation, Vol. 54, No.2, February 2006, pp.409-416.

[82] R. L. Haupt and M. Lanagan, “Reconfigurable antennas,”IEEE Antennas

Propag. Mag., vol. 55, no. 1, pp. 49–61, 2013.

[83] Shisghir Shankar Punjala, Kia Makki “Rectangular Reconfigurable

Antenna(RRA) with Ultra Wideband Tuning Ability”3rd

European

Conference on Antennas and Propagation,2009(EuCAP2009), pp422-

423.ISBN:978-3-00-024573-2.

[84] Loizeau. S, Sibille. A, “A Reconfigurable PIFA Antenna with Ultra

wideband Tuning”, Antennas and propagation,2007, EuCAP 11-16 Nov.

2007, pp 1-6, ISBN: 978-0-86341-842-6.

[85] N. Behdad and K. Sarabandi, "Dual-Band Reconfigurable Antenna with a

Very Wide Tunability Range, "IEEE Transactions on Antennas and

Propagation, Vol. 54, No.2, February 2006, pp.409-416.

[86] Songnan Yang, Chunna Zhang, Helen K. Pan, Aly E. Fathy, and Vijay K.

Nair “Frequency-Reconfigurable Antennas for Multi radio Wireless

Platforms” IEEE Microwave Magazine, February 2009.

[87] J. Boerman and J. Bernhard, “Performance study of pattern reconfigurable

antennas in MIMO communication systems,” IEEE Transactions on

Antennas and Propagation, vol. 56, no. 1, pp. 231 – 236, 2008.

[88] Haider, N., Tran, D.P., and Yarovoy, A.G.: ‘A new concept for frequency

reconfigurable phased-array element’. Loughborough Antennas and

Propagation Conf., November 2011.

Page 10: REFERENCES - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/20484/16/16_references.pdf[54] Brian Edward and Daniel Rees,” A broadband printed dipole with integrated balun”,

218

[89] S.-J. Ha andW. Jung, “Reconfigurable beam steering using a microstrip

patch antenna with a u-slot for wearable fabric applications,” IEEE

Antennas Wireless Propag. Lett., vol. 10, pp. 1228–1231, 2011.

[90] Joseph Sahaya Kulandai Raj, Joachim Bonney, Pablo Herrero and Joerg

Schoebel “A Reconfigurable Antenna for MIMO application” 2009

Loughborough Antennas & Propagation Conference, 16-17 November

2009, Loughborough, UK.

[91] Songnan Yang, Chunna Zhang, Helen K. Pan, Aly E. Fathy, and Vijay K.

Nair “Frequency-Reconfigurable Antennas for Multi radio Wireless

Platforms” IEEE Microwave Magazine,February 2009.

[92] J. Boerman and J. Bernhard, “Performance study of pattern reconfigurable

antennas in MIMO communication systems,” IEEE Transactions on

Antennas and Propagation, vol. 56, no. 1, pp. 231 – 236, 2008.

[93] A. Grau, H. Jafarkhani, and F. De Flaviis, “A reconfigurable multipleinput

multiple-output communication system,” IEEE Transactions on Wireless

Communications, vol. 7, no. 5, pp. 1719– 1733, May 2008.

[94] D. Piazza, N. Kirsch, A. Forenza, J. Heath, R.W., and K. Dandekar,

“Design and evaluation of a reconfigurable antenna array for MIMO

systems,” IEEE Transactions on Antennas and Propagation, vol. 56, no. 3,

pp. 869 – 881, 2008.

[95] A.Khaleghi, A.Azoulay, J.C.Bolomey," A Dual Band Back Coupled

Meander line Antenna for Wireless LAN Applications", Vehicular

Technology Conference, 2005.

[96] J. R. James and P. S. Hall, Handbook of Microstrip Antennas, London:

Peter Peregrines, 1989.

[97] D. M. Pozar and D. H. Schaubert, Microstrip Antennas: The Analysis and

Design of Microstrip Antennas and Arrays, New York: IEEE Press, 1995.

[98] P. Bhartia, I. Bahl, R. Garg, and A. Ittipiboon, Microstrip Antenna Design

Handbook, Norwood: Artech House, 2001.

Page 11: REFERENCES - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/20484/16/16_references.pdf[54] Brian Edward and Daniel Rees,” A broadband printed dipole with integrated balun”,

219

[99] G. Kumar and K. P. Ray, Broadband Microstrip Antenna, London: Artech

House, 2003.

[100] C. Soras, M. Karaboikis, G. Tsachtiris and V. Makos, “Analysis and

design of an inverted-F antenna printed on a PCMCIA card for the 2.4 GHz

ISM band”, IEEE Antenna’s and Propagation Magazine, vol. 44, no. 1, Feb.

2002.

[101] M. Napitupulu and A. Munir, “Compact dual band inverted-F antenna for

2.3GHz and 3.3GHz WiMAX application,” 4th Indonesia Japan Joint

Scientific Symposium (IJJSS) 2010 Proc., Bali, Indonesia, Sep. 2010

[102] R. L. Li, B. Pan, T. Wu, J. Laskar, and M. M. Tentzeris, “A triple-band

low-profile planar antenna for wireless applications,” Antennas and

Propagation Society (AP-S) International Symposium 2008 Proc., San

Diego, USA, Jul. 2008.

[103] Douglas B. Miron," Small Antenna Design", Elsevier Inc. , 2006.

[104] K.J. Vinoy, K. A. Jose, V. K. Varadan and V. V. Varadan, "Hilbert curve

fractal antenna: a small resonant antenna for VHF/UHF applications",

Microwave & Optical Technology Letters, vol. 29, pp. 215-219, 2001

[105] Masato Takiguchi and Yoshihide Yamada,"Improvement of Radiation

Efficiencies by Applying Folded Configurations to Very Small Meander

Line Antennas", IEEE Topical Conference on Wireless Communication

Technology, 2003.

[106] Hai-Ming Hsiao, Jeun-Wen Wu, Jui-Han Lu and Yau-Der Wang," Multi-

Band Dual-Meander-Line Antenna For Mobile Handsets", Electronic letter

, IEEE-2006.

[107] Naobumi Michishita, Yoshihide Yamada and Nobuaki

Nakakura,"Miniaturization of a Small Meander Line Antenna by Loading a

High Er Material", l0th Asia-Pacific Conference on Communications ,

2004.

Page 12: REFERENCES - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/20484/16/16_references.pdf[54] Brian Edward and Daniel Rees,” A broadband printed dipole with integrated balun”,

220

[108] T. Endo, Y.Sunahara, S.Satoh, and T. Katagi, “Resonant frequency and

radiation efficiency of meander line antennas,” Electron. Commun. Jpn. 2,

2000, 83, (1), pp. 52– 58.

[109] Hanyang Y. Wang,Michael J.Lancaster.,”Aperture coupled thin-film

superconducting meander antennas”,IEEE Transactions on Antenna and

Propagation,Vol.AP-47,No.5,May 1999,pp.829-836.

[110] Jail Rashed and Chen,”A new class of resonant antennas”,IEEE

Transactions on Antenna and propagation,Vol.AP-39,No.9,1991,pp.1428-

1430.

[111] C.Wood,P.S.Hall and J.R.James,”Design of wideband circularly polarized

microstrip antennas and arrays”, International Conference on Antennas and

Propagation,IEE.pp.312-316,1978.

[112] Songnan Yang, Chunna Zhang, Helen K. Pan, Aly E. Fathy, and Vijay K.

Nair “Frequency-Reconfigurable Antennas for Multi radio Wireless

Platforms” IEEE Microwave Magazine, February 2009.

[113] R. Bawer and J. J. Wolfe, “The spiral antenna,” IRE Int. Convention

Record, pt. T., pp. 84–95, 1960.

[114] J. A. Kaiser, “The archimedean two-wire spiral antenna,” IRE Trans.

Antennas Propag., vol. AP-8, pp. 312–323, May 1960.

[115] C. A. Balanis, Antenna Theory: Analysis and Design. New York:Wiley,

1997.

[116] J. Ely, C. Christodoulou, and D. Shively, “Square spiral microstrip

antennas: Analysis for different sizes and substrate parameters using a

personal computer,” in Proc. IEEE Microwave Systems Conf., Mar. 1995,

pp. 362–367.

[117] H. Nakano, J. Eto, Y. Okabe, and J. Yamauchi, “Tilted- and axial-beam

formation by a single-arm rectangular spiral antenna with compact

dielectric substrate and conducting plane,” IEEE Trans. Antennas Propag.,

vol. 50, pp. 17–24, Jan. 2002.

Page 13: REFERENCES - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/20484/16/16_references.pdf[54] Brian Edward and Daniel Rees,” A broadband printed dipole with integrated balun”,

221

[118] C. Jung and F. De Flaviis, “Tilt beam characteristic by changing length of

finite-sized square dielectric substrate of one arm rectangular spiral

antenna,” in Proc. IEEE Asia Pacific Microwave Conf., Seoul, Korea, Nov.

2003.

[119] G. H. Huff, J. Feng, S. Zhang, and J. T. Bernhard, “A novel radiation

pattern and frequency reconfigurable single turn square spiral microstrip

antenna,” IEEE Microwave Wireless Components Letters, vol. 13, pp. 57–

59, Feb. 2003.

[120] Chang won Jung, Ming-jer Lee, G. P. Li, and Franco De Flaviis,

“Reconfigurable Scan-Beam Single-Arm Spiral Antenna Integrated with

RF-MEMS Switches” IEEE Transactions On Antennas And Propagation,

VOL. 54, NO. 2, February 2006.

[121] V. Callec, E. Fourn, R. Gillard and H. Diez,” A New Reconfigurable

Square Spiral Antenna” 6th European Conference on Antennas and

Propagation (EUCAP), Prague, 26-30, March 2012.

[122] Li-Rong Tan, Rui-Xin Wu, Cong-Yi Wang, and Yin Poo “Magnetically

Tunable Ferrite Loaded SIW Antenna” IEEE Antennas Wireless Propag.

Lett., vol.12, pp. 1536-1225, 2013.

[123] Somarith Sam and Sungjoon Lim “Frequency Reconfigurable Substrate

Integrated Waveguide Antenna”, Proceedings of ISAP2012”, Nagoya,

Japan

[124] Y. Tawk, J. Costantine, and C. G. Christodoulou, “A varactor-based

reconfigurable filtenna,” IEEE Antennas Wireless Propag. Lett., vol.11, pp.

716–719, 2012.

[125] D. Peroulis, K. Sarabandi, and L. P. B. Katehi, “Design of reconfigurable

slot antennas,” IEEE Trans. Antennas Propag., vol. 53, no. 2, pp. 645–654,

Feb. 2005.

Page 14: REFERENCES - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/20484/16/16_references.pdf[54] Brian Edward and Daniel Rees,” A broadband printed dipole with integrated balun”,

222

[126] M. Bozzi, A. Georgiadis, and K. Wu, “Review of substrate-integrated

waveguide circuits and antennas,” Microw., Antennas Propag., vol. 5, no.

8, pp. 909–920, 2011.

[127] D.-Y. Kim, J.W. Lee, T. K. Lee, and C. S. Cho, “Design of SIW cavity

backed circular-polarized antennas using two different feeding transitions,”

IEEE Trans. Antennas Propag., vol. 59, no. 4, pp. 1398–1403,Apr. 2011.

[128] G. Q. Luo and Z. F. Hu, “Planar slot antenna backed by substrate integrated

waveguide cavity,” IEEE Antennas Wireless Propag. Lett., vol.7, pp. 236–

239, 2008.

[129] J. F. Xu, W. Hong, H. J. Tang, Z. Q. Kuai, and K. Wu, “Half-mode

substrate integrated waveguide (HMSIW) leaky-wave antenna for

millimeter-wave applications,” IEEE Antennas Wireless Propag. Lett., vol.

7, pp. 85–88, 2008.

[130] C. R. White and G. M. Rebeiz, “A shallow varactor-tuned cavity-backed

slot antenna with a 1.9:1 tuning range,” IEEE Trans. Antennas Propag.,

vol.58, no.3, pp.633-639, Mar. 2010.

[131] Alireza Pourghorban saghati and Kamran Entesari “A Reconfigurable SIW

Cavity-Backed Slot Antenna with one octave Tuning Range ”IEEE

Transactions on Antennas and Propagation”, 2012.

[132] G. Q. Luo, Z. F. Hu, L. X. Dong, and L. L. Sun, “planar slot antenna

backed by substrate integrated waveguide cavity,” IEEE Antennas Wireless

Propag. Lett., vol.7, no., pp.236-239, 2008.

[133] J.C. Bohorquez, H. A. F. Pedraza, I. C. H. Pinzon, J. A. Castiblanco, N.

Pena, and H. F. Guarnizo, “planar substrate integrated waveguide cavity-

backed antenna," IEEE Antennas Wireless Propag. Lett., vol. 8, pp.1139-

1142, 2009.

[134] G. Q. Luo, Z. F. Hu, W. J. Li, X. H. Zhang, L. L. Sun, J. F. Zheng,

“Bandwidth-Enhanced low-profile cavity-Backed slot antenna by using

Page 15: REFERENCES - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/20484/16/16_references.pdf[54] Brian Edward and Daniel Rees,” A broadband printed dipole with integrated balun”,

223

hybrid SIW cavity modes,” IEEE Trans. Antennas Propag., vol. 60, no.4,

pp.1698-1704, Apr. 2012.

[135] D. Deslandes and K. Wu, “Single-substrate integration technique of planar

circuits and waveguide filters,” IEEE Trans. Microw. TheoryTech., vol. 51,

no. 2, pp. 593–596, Feb. 2003.

[136] Mohamed H.Awida and Aly E.Fathy ‘Substrate-Integrated Waveguide Ku-

Band Cavity-Backed 2X2 Microstrip Patch Array Antenna," IEEE

Antennas Wireless Propag. Lett., vol. 8, pp.1054-1056,2009.

[137] J. Hirokawa and M. Ando, “Single-layer feed waveguide consisting of

posts for plane TEM wave excitation in parallel plates,” IEEE

Trans.Antennas Propag., vol. 46, no. 5, pp. 625–630, May 1998.

[138] B.A. Cetiner et al., “Multifunctional Reconfigurable MEMS Integrated

Antenna for Adaptive MIMO Systems,” IEEE Commun. Mag., vol. 42, no.

12, 2004, pp. 62-70.

[139] M.-J. Lee, Design, Fabrication and Technology of Reconfigurable

Antennas, PhD Dissertation, University of California at Irvine, Irvine, CA,

2007.

[140] B. Kim, B. Pan, S. Nikolaou, J. Papapolymerou M. M.Tentzeris and Y. –S.

Kim, “A Novel Single-Feed Circular Microstrip Antenna with

reconfigurable Polarization Capability,” IEEE Trans. Antenna Propagation,

vol. 56, no. 3, pp.630-638, March 2008.

[141] Y. J. Sung, T. U. Jang and Y.-S. Kim, “ A reconfigurable antenna for

switchable polarization” IEEE Microwave and Wireless Component

Letters, vol. 14, no. 11, pp. 534-536,November 2004.

[142] Kyungho Chung, Yongsik Nam, Taeyeoul Yun, and Jaehoon Choi,

“Reconfigurable Microstrip Patch Antenna with Switchable Polarization”

ETRI Journal, Vol. 28, no 3, pp. 379-381, June 2006.

Page 16: REFERENCES - INFLIBNETshodhganga.inflibnet.ac.in/bitstream/10603/20484/16/16_references.pdf[54] Brian Edward and Daniel Rees,” A broadband printed dipole with integrated balun”,

224

[143] Manoj S Parihar, A.Basu, and S. K. Koul, "Polarization reconfigurable

microstrip antenna", Asia-Pacific Microwave Conference, December 7-10,

2009, Singapore.

[144] P.N.Cummings, “Active Antenna Bandwidth Control Using Reconfigurable

Antenna Elements,” Ph.D dissertation, Virginia Polytechnic Institute &

State University, Blackburg, Virginia, 2003.