Broadband Planar Antena Design

Broadband wireless communications require wideband antennas to support large number of users and higher data rates. Many existing wide band antennas are large in size and some have only circular polarization. On the other hand low-profile, dual-polarized antennas frequently have limited bandwidth...

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Bibliographic Details
Main Author: Wan Mohd Zaim, Wan Salleh
Format: Monograph
Published: UTeM 2008
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Online Access:http://library.utem.edu.my:8000/elmu/index.jsp?module=webopac-d&action=fullDisplayRetriever.jsp&szMaterialNo=0000051506
http://library.utem.edu.my:8000/elmu/index.jsp?module=webopac-d&action=fullDisplayRetriever.jsp&szMaterialNo=0000051506
http://eprints.utem.edu.my/3334/1/Broadband_Planar_Antena_Design_-_Wan_Mohd_Zaim_b_Wan_Salleh_-_TK7871.6.W36_2008_24_Pages.pdf
http://eprints.utem.edu.my/3334/2/Broadband_Planar_Antena_Design_-_Wan_Mohd_Zaim_b_Wan_Salleh_-_TK7871.6.W36_2008.pdf
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Summary:Broadband wireless communications require wideband antennas to support large number of users and higher data rates. Many existing wide band antennas are large in size and some have only circular polarization. On the other hand low-profile, dual-polarized antennas frequently have limited bandwidth. Planar antenna was designing to solve the problem of microstrip antenna. The main problem of microstrip antenna is, it has narrowband characteristic up to 3%. So firstly, the parameter to designing the planar antenna should be known. The planar antenna is designing for Broadband application for 2.4GHz frequency in range of 0-10 GHz. Microwave Office software was used for design and simulation to see the results. Simulation process should be shows the return loss of planar antenna :s -1 OdB, gain, radiation pattern, percentage bandwidth achieved, SWR, and others for the planar antenna.