A Compact Disc-Shaped Printed Antenna Using Parasitic Element on Ground Plane for Super Wideband Applications

作者

  • M. M. Islam Department of Software Engineering Daffodil International University, Dhanmondi, Dhaka 1207, Bangladesh
  • M. R. I. Faruque Space Science Centre (ANGKASA) Universiti Kebangsaan Malaysia, 43600 UKM, Bangi, Selangor, Malaysia
  • M. T. Islam Department of Electrical, Electronic and Systems Engineering Universiti Kebangsaan Malaysia, 43600 UKM, Bangi, Selangor, Malaysia

关键词:

Microstrip line, parasitic element, Super Wide Band (SWB), Ultra-Wide Band (UWB)

摘要

A microstrip line-fed monopole antenna is proposed and investigated using a structure of parasitic element for super-wideband applications. The parasitic element consists of 4 rectangular embedded slots on the ground plane. This parasitic element on the ground plane leads the UWB frequency band into the SWB frequency band. This proposed monopole antenna is fed by a microstrip line and is printed on low dielectric FR4 material of 1.6 mm thickness. All the simulations are performed using commercially available, finite element method (FEM) based Ansoft high-frequency structure simulator (HFSS) software and CST Microwave Studio. Measured results exhibit that the proposed disc-shaped antenna shows a wide bandwidth which covers from 2.90 GHz to more than 20 GHz, with a compact dimension of 25 mm × 33 mm for VSWR <2, observing an extended ultra-wideband frequency. A good combination is noticed between simulation and measurement. This proposed SWB antenna delivers impedance bandwidth covering the L, C, X, Ku bands and points out sharply surface current flow and nearly omnidirectional radiation patterns, which is appropriate for UWB or SWB applications.

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参考

Federal Communications Commission Revision of Part 15 of the Commission’s Rules Regarding Ultra-Wideband Transmission System from 3.1 to 10.6 GHz, in Federal Communications Commission: ET-Docket, pp. 98-153, 2002.

C.-C. Lin and H.-R. Chuang, “A 3-12 GHz UWB planar triangular monopole antenna with ridged ground-plane,” Progress In Electromagnetics Research, vol. 83, pp. 191-198, 2008.

N. Ojaroudi, M. Ojaroudi, N. Ghadimi, and M. Mehranpour, “UWB square monopole antenna with omni-directional radiation patterns for use in circular cylindrical microwave imaging systems,” Applied Computational Electromagnetics Society (ACES) Journal, vol. 28, no. 2, pp. 123-129, 2013.

N. Ojaroudi, M. Ojaroudi, and N. Ghadimi, “Square monopole antenna with band-notched characteristic for UWB communications,” Applied Computational Electromagnetics Society (ACES) Journal, vol. 28, no. 8, pp. 712-718, 2013.

R. Azim, M. T. Islam, and N. Misran, “Design of a planar UWB antenna with new band enhancement technique,” Applied Computational Electromagnetics Society (ACES) Journal, vol. 26, no. 10, 2011.

S. Lin, R.-N. Cai, G.-L. Huang, and J.-X. Wang, “A miniature UWB semi-circle monopole printed antenna,” Progress In Electromagnetics Research Letters, vol. 23, pp. 157-163, 2011.

N. Ojaroudi, M. Ojaroudi, N. Ghadimi, “Disc shaped monopole antenna with dual band-notched function for UWB applications,” Applied Computational Electromagnetics Society (ACES) Journal, vol. 28, no. 6, pp. 528-534, 2013.

M. M. Islam, M. T. Islam, M. Samsuzzaman, and M. R. I. Faruque, “Compact metamaterial antenna for UWB applications,” Electronics Letters, vol. 51, pp. 1222-1224, 2015.

C. M. Li and L. H. Ye, “Improved dual band notched UWB slot antenna with controllable notched bandwidths,” Progress In Electromagnetics Research, vol. 115, pp. 477-493, 2011.

M. T. Partovi, N. Ojaroudi, and M. Ojaroudi, “Small slot antenna with enhanced bandwidth and band-notched performance for UWB applications,” Applied Computational Electromagnetics Society (ACES) Journal, vol. 27, no. 9, pp. 772-778, 2012.

M. Almalkawi, M. Westrick, and V. Devabhaktuni, “Compact super wideband monopole antenna with switchable dual band-notched characteristics,” Proceedings of the Asia-Pacific Microwave Conference, Taiwan, pp. 723-725, 2012.

X. R. Yan, S. S. Zhong, and X. X. Yang, “Compact printed monopole antenna with super-wideband,” Proceedings of the International Symposium on Microwave, Antenna, Propagation and EMC Technologies for Wireless Communications, China, pp. 605-607, 2007.

S. Barbarino and F. Consoli, “UWB circular slot antenna provided with an inverted-L notch fillter for the 5 GHz WLAN band,” Progress In Electromagnetics Research, vol. 104, pp. 1-13, 2010.

D. Tran, A. Szilagyi, I. E. Lager, P. Aubry, L. P. Ligthart, and A. Yarovoy, “A super wideband antenna,” Proceedings of the 5th European Conference on Antennas and Propagation, Italy, pp. 2656-2660, 2011.

W. Lu and H. Zhu, “Super-wideband antipodal slot antenna,” Proceedings of the Asia Pacific Microwave Conference, Singapore, pp. 1894-1897, 2009.

X. H. Jin, X. D. Huang, C. H. Cheng, and L. Zhu, “Super-wideband printed asymmetrical dipole antenna,” Progress In Electromagnetics Research Letters, vol. 27, pp. 117-123, 2011.

M. S. Mahmud and S. Dey, “Design and performance analysis of a compact and conformal super wide band textile antenna for wearable body area applications,” Proceedings of the 6th European Conference on Antennas and Propagation, Czech Republic, pp. 1-5, 2012.

J. K. Liu, P. Esselle, S. G. Hay, and S. S. Zhong, “Study of an extremely wideband monopole antenna with triple band-notched characteristics,” Progress In Electromagnetics Research, vol. 123, 143-158, 2012.

K. L. Lau, K. C. Kong, and K. M. Luk, “Superwideband monopolar patch antenna,” Electronics Letters, vol. 44, no. 12, pp. 716-718, 2008.

K.-R. Chen, C.-Y.-D. Sim, and J.-S. Row, “A compact monopole antenna for super wideband applications,” IEEE Antennas and Wireless Propagation Letters, vol. 10, pp. 488-491, 2011.

M. Manohar, R. S. Kshetrimayum, and A. K. Gogoi, “Printed monopole antenna with tapered feed line, feed region and patch for super wideband applications,” IET Microwaves, Antennas and Propagation, vol. 8, pp. 39-45, 2014.

Y. Dong, W. Hong, L. Liu, Y. Zhang, and Z. Kuai, “Performance analysis of a printed super-wideband antenna,” Microwave and Optical Technology Letters, vol. 51, pp. 949-956, 2009.

J. Liu, K. P. Eselle, and S. S. Zhong, “A printed extremely wideband antenna for multi-band wireless systems,” Antennas Propagation Society Symposium, Toronto, Canada, July 2010.

M. N. Srifi, S. K. Podilchak, M. Essaaidi, and Y. M. M. Antar, “Compact disc monopole antennas for current and future ultra-wideband (UWB) applications” IEEE Transactions on Antennas and Propagation, vol. 59, no. 12, pp. 4470-4480, 2011.

C. C. Lin, P. Jin, and R. W. Ziolkowski, “Single, dual and tri-band-notched ultra-wideband (UWB) antennas using capacitively loaded loop (CLL) resonators,” IEEE Transactions on Antennas and Propagation, vol. 60, no. 1, pp. 102-109, 2012.

C. Yoon, W.-J. Lee, W.-S. Kim, H.-C. Lee, and H.- D. Park, “Compact band-notched ultra-wide band printed antenna using inverted L-slit,” Microwave and Optical Technology Letters, vol. 54, no. 1, pp. 143-144, 2012.

C. A. Balanis, Antenna Theory: Analysis and Design. 3rd ed., Wiley-Interscience: New York, NY, USA, 2012.

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已出版

2021-08-18

栏目

General Submission