A Novel Miniature Printed UWB Monopole Patch Antenna

Article Preview

Abstract:

A novel monopole patch antenna with very simple structure to fabricate on a printed circuit board is proposed to operate from 3.05 to 11.8GHz for UWB application. Ellipse technique is used to optimize its main parameters when an improvement of its compact profile is achieved. The designed antenna has miniature total volume of 18.6mm×18mm×1mm, and quasi-omnidirectional pattern in the X-Y plane across the major bandwidth.

You might also be interested in these eBooks

Info:

Periodical:

Advanced Materials Research (Volumes 443-444)

Pages:

198-201

Citation:

Online since:

January 2012

Export:

Price:

[1] Federal Communications Commission, First report and order, revision of Part 15 of the commission's rules regarding ultra-wideband transmission syst, FCC 02-48, adopted Feb. 2002, released April (2002).

Google Scholar

[2] X. Li, S.K. Davis, S.C. Hagness, D.W. Van der Weide, and B.D. Van Veen, Microwave imaging via space-time beamforming: experimental investigation of tumor detection in multilayer breast phantoms, IEEE Transactions on Microwave Theory and Techniques, 2004, 52, (8), pp.1856-1865.

DOI: 10.1109/tmtt.2004.832686

Google Scholar

[3] X. Yun, E.C. Fear, and R.H. Johnston, Compact Antenna for Radar-Based Breast Cancer Detection, IEEE Transactions on Antennas and Propagation, 2005, 53, (8), pp.2374-80.

DOI: 10.1109/tap.2005.852308

Google Scholar

[4] D. Uduwawala, and M. Norgren, An Investigation of Some Geometrical Shapes and Selection of Shielding and Lumped Resistors of Planar Dipole Antennas for GPR Applications Using FDTD, IEEE Transactions on Geoscience and Remote Sensing, 2006, 44, (12), p.3555.

DOI: 10.1109/tgrs.2006.881747

Google Scholar

[5] Y. Q. Xia, and Z. G. Duan, Compact CPW-fed dual ellipses antenna for ultra-wideband system, Electron. Lett., 2008, 44, (9), pp.567-568.

DOI: 10.1049/el:20080198

Google Scholar

[6] K.L. Wong, C.H. Wu, and S.W. Su, Ultrawide-band square planar metal-plate monopole antenna with a trident-shaped feeding strip, IEEE Transactions on Antennas and Propagation, 2005, 53, (4), p.1262–1269.

DOI: 10.1109/tap.2005.844430

Google Scholar

[7] B. Allen, M. Dohler, E.E. Okon, W.Q. Malik, A.K. Brown, and D.J. Edwards, Ultra-wideband Antennas and Propagation for Communications, Radar and Imeging, Wiley, Chichester, England, (2007).

Google Scholar

[8] K. Chung, J. Kim, J. Choi, Wideband microstrip-fed monopole antenna having frequency band-notch function, IEEE Microwave and Wireless Components Letters, 2005, 15, (11), p.766 – 768.

DOI: 10.1109/lmwc.2005.858969

Google Scholar

[9] K. Carver and J. Mink, Microstrip Antenna Technology, IEEE Transactions on Antenna and Propagation, 1981, 29, (1), pp.2-24.

DOI: 10.1109/tap.1981.1142523

Google Scholar

[10] D.M. Pozar, Microwave engineering, Addison-Wesley, New York, (1990).

Google Scholar