42
Views
0
CrossRef citations to date
0
Altmetric
Methods in Electromagnetics

Design of Wideband Microstrip-Fed Plannar Monopole Antenna for Multiband Applications

, , , &
Pages 1623-1630 | Published online: 03 Apr 2012

References

  • Ang , B.-K. and Chung , B.-K. 2007 . A wideband E-shaped microstrip patch antenna for 5-6 GHz wireless communications . Progress In Electromagnetics Research , PIER 75 : 397 – 407 .
  • Wang , Y. J. and Lee , C. K. 2004 . Compact and broadband microstrip patch antenna for the 3 g Imt-2000 handsets applying styrofoam and shorting-posts . Progress In Electromagnetics Research , PIER 47 : 75 – 85 .
  • Wang , Y. J. and Lee , C. K. 2002 . Design of dual-frequency microstrip patch antennas and application for Imt-2000 mobile handsets . Progress In Electromagnetics Research , PIER 36 : 265 – 278 .
  • Wang , F. J. and Zhang , J.-S. 2007 . Wideband cavity-backedpatch antenna for PCS/Imt2000/2.4 GHz WLAN . Progress In Electromagnetics Research , PIER 74 : 39 – 46 .
  • Eldek , A. A. , Elsherbeni , A. Z. and Smith , C. E. 2005 . Dualwideband square slot antenna with a U-shaped printed tuning stub for personal wireless communication systems . Progress In Electromagnetics Research , PIER 53 : 319 – 333 .
  • Alkanhal , M. A. and Sheta , A. F. 2007 . A novel dual-band reconfigurable square-ring microstrip antenna . Progress In Electromagnetics Research , PIER 70 : 337 – 349 .
  • Ansari , J. A. , Ram , R. B. and Singh , P. 2008 . Analysis of a gapcoupled stacked annuler ring microstrip antenna . Progress In Electromagnetics Research B , 4 : 147 – 158 .
  • Jolani , F. and Dadgarpour , A. M. 2008 . Compact M-slot folded patch antenna for WLAN . Progress In Electromagnetics Research Letters , 3 : 35 – 42 .
  • Kaya , A. 2008 . Meandered slot and slit loaded compact microstrip antenna with integrated impedance tuning network . Progress In Electromagnetics Research B , 1 : 219 – 235 .
  • Zainud-Deen , S. H. , Badr , M. E. , El-Deen , E. , Awadalla , K. H. and Sharshar , H. A. 2008 . Microstrip antenna with defected ground plane structure as a sensor for landmines detection . Progress In Electromagnetics Research B , 4 : 27 – 39 .
  • Eldek , A. A. 2006 . Numerical analysis of a small ultra wideband microstrip-fed tap monopole antenna . Progress In Electromagnetics Research , PIER 65 : 59 – 69 .
  • Yin , X.-C. , Ruan , C.-L. , Ding , C.-Y. and Chu , J.-H. 2008 . A planar U type monopole antenna for UWB applications . Progress In Electromagnetics Research Letters , 2 : 1 – 10 .
  • Bernardi , P. and Cicchetti , R. 2008 . An equivalent circuit for EMI prediction in printed circuit boards featuring a straight-to-bent microstrip line coupling . Progress In Electromagnetics Research B , 5 : 107 – 118 .
  • Abbaspour , M. and Hassani , H. R. 2008 . Wideband star-shaped microstrip patch antenna . Progress In Electromagnetics Research Letters , 1 : 61 – 68 .
  • Khan , S. N. , Hu , J. , Xiong , J. and He , S. 2008 . Circular fractal monopole antenna for low VSWR UWB applications . Progress In Electromagnetics Research Letters , 1 : 19 – 25 .
  • Song , Y. , Jiao , Y.-C. , Zhao , G. and Zhang , F.-S. 2007 . Multiband CPW-FED triangle-shaped monopole antenna for wirless applications . Progress In Electromagnetics Research , PIER 70 : 329 – 336 .
  • Liu , W. C. and Chen , W. R. 2004 . CPW-fed compact meandered patch antenna for dual-band operation . Electron. Lett. , 40 ( No. 18 ) Sep. : 1094 – 1095 .
  • Kim , T. H. and Park , D. C. 2005 . CPW-fed compact monopole antenna for dual-band WLAN applications . Electron. Lett. , 41 ( No. 6 ) Mar. : 292 – 293 .
  • Liu , W. C. 2007 . Optimal design of dualband CPW-FED Gshaped monopole antenna for WLAN application . Progress In Electromagnetics Research , PIER 74 : 21 – 38 .
  • Zaker , R. , Ghobadi , C. and Nourinia , J. 2007 . A modified microstrip-FED two-step tapered monopole antenna for UWB and WLAN applications . Progress In Electromagnetics Research , PIER 77 : 137 – 148 .
  • Lin , Y.-D. and Chi , P.-L. 2005 . Tapered bent folded monopole for dual-band wireless local area network (WLAN) systems . IEEE AntennaWireless Propag. Lett. , 4 : 355 – 357 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.