Design and analysis of Dual segments two element array antenna for wideband applications
A Broadband Dual-segment two element array mount up with reflector, operates at center frequency of 7.5 GHz is reported. Each Dielectric Resonator (DR) comprises of two DR's with diverse permittivities stacked in concert. The bottom segment is of Barium Zinc Tantalum (BZT) with reasonably high...
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creator | Fadzil Bin Ain, Mohd Ullah, U. Sulaiman, A. A. Othman, M. A. Qasaymeh, Y. M. Ahmad, Z. A. Hutagalung, S. D. |
description | A Broadband Dual-segment two element array mount up with reflector, operates at center frequency of 7.5 GHz is reported. Each Dielectric Resonator (DR) comprises of two DR's with diverse permittivities stacked in concert. The bottom segment is of Barium Zinc Tantalum (BZT) with reasonably high dielectric constant and serves as impedance transformer; while the top segment is of RogersRT6010 of low permittivity and serves as resonator. These DR's are excited by executing T-Junction equal power divider (50Ω - 100 Ω). This arrangement reveals a wide impedance bandwidth of 21% for simulation while 24% for measured. Also a realistic enhance of 2 - 2.5 dB in the gain and directivity of the antenna has been witnessed by optimizing reflector size and location in the near field region of antenna. Analysis of the antenna is performed by implying CST 2008 and fabricated on Rogers 4003C with ε s = 3.38. Reasonable agreement between simulated and experimental results was observed. |
doi_str_mv | 10.1109/RFM.2011.6168776 |
format | Conference Proceeding |
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Also a realistic enhance of 2 - 2.5 dB in the gain and directivity of the antenna has been witnessed by optimizing reflector size and location in the near field region of antenna. Analysis of the antenna is performed by implying CST 2008 and fabricated on Rogers 4003C with ε s = 3.38. 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This arrangement reveals a wide impedance bandwidth of 21% for simulation while 24% for measured. Also a realistic enhance of 2 - 2.5 dB in the gain and directivity of the antenna has been witnessed by optimizing reflector size and location in the near field region of antenna. Analysis of the antenna is performed by implying CST 2008 and fabricated on Rogers 4003C with ε s = 3.38. Reasonable agreement between simulated and experimental results was observed.</description><subject>Antenna Array</subject><subject>Antennas</subject><subject>Approximation methods</subject><subject>Dielectric Resonator Antenna</subject><subject>Dielectrics</subject><subject>Dual segments</subject><subject>Gain</subject><subject>Monitoring</subject><subject>Reflector</subject><subject>Resonant frequency</subject><subject>Two element array</subject><subject>Wideband</subject><isbn>1457716283</isbn><isbn>9781457716287</isbn><isbn>9781457716300</isbn><isbn>1457716305</isbn><isbn>9781457716317</isbn><isbn>1457716313</isbn><fulltext>true</fulltext><rsrctype>conference_proceeding</rsrctype><creationdate>2011</creationdate><recordtype>conference_proceeding</recordtype><sourceid>6IE</sourceid><sourceid>RIE</sourceid><recordid>eNotUF9LwzAcjIigzr4LvuQLtCb95U_zKJubwkSQPfg20uaXEenS0lRGv71Vd3Acxx33cITcc1Zwzszjx_qtKBnnheKq0lpdkMzoigupNVfA2CW5PZuygmuSpfTFZihlNC9vyOcKUzhEaqObadsphUQ7T1fftqUJD0eMY6LjqaPY4q-hdhjsNHdHjNFS3w30FBzWfwN934bGjqGL6Y5cedsmzM66ILv18275km_fN6_Lp20eDBvzSnpEUK4Rqi4BuVAKnHDga8lqqEAzg6yxQtZN2TBrXDVnQgAaIyV4CQvy8D8bEHHfD-Foh2l__gJ-AONaUwg</recordid><startdate>201112</startdate><enddate>201112</enddate><creator>Fadzil Bin Ain, Mohd</creator><creator>Ullah, U.</creator><creator>Sulaiman, A. 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D.</creatorcontrib><collection>IEEE Electronic Library (IEL) Conference Proceedings</collection><collection>IEEE Proceedings Order Plan All Online (POP All Online) 1998-present by volume</collection><collection>IEEE Xplore All Conference Proceedings</collection><collection>IEEE Electronic Library (IEL)</collection><collection>IEEE Proceedings Order Plans (POP All) 1998-Present</collection></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext_linktorsrc</fulltext></delivery><addata><au>Fadzil Bin Ain, Mohd</au><au>Ullah, U.</au><au>Sulaiman, A. A.</au><au>Othman, M. A.</au><au>Qasaymeh, Y. M.</au><au>Ahmad, Z. A.</au><au>Hutagalung, S. D.</au><format>book</format><genre>proceeding</genre><ristype>CONF</ristype><atitle>Design and analysis of Dual segments two element array antenna for wideband applications</atitle><btitle>2011 IEEE International RF & Microwave Conference</btitle><stitle>RFM</stitle><date>2011-12</date><risdate>2011</risdate><spage>398</spage><epage>402</epage><pages>398-402</pages><isbn>1457716283</isbn><isbn>9781457716287</isbn><eisbn>9781457716300</eisbn><eisbn>1457716305</eisbn><eisbn>9781457716317</eisbn><eisbn>1457716313</eisbn><abstract>A Broadband Dual-segment two element array mount up with reflector, operates at center frequency of 7.5 GHz is reported. Each Dielectric Resonator (DR) comprises of two DR's with diverse permittivities stacked in concert. The bottom segment is of Barium Zinc Tantalum (BZT) with reasonably high dielectric constant and serves as impedance transformer; while the top segment is of RogersRT6010 of low permittivity and serves as resonator. These DR's are excited by executing T-Junction equal power divider (50Ω - 100 Ω). This arrangement reveals a wide impedance bandwidth of 21% for simulation while 24% for measured. Also a realistic enhance of 2 - 2.5 dB in the gain and directivity of the antenna has been witnessed by optimizing reflector size and location in the near field region of antenna. Analysis of the antenna is performed by implying CST 2008 and fabricated on Rogers 4003C with ε s = 3.38. Reasonable agreement between simulated and experimental results was observed.</abstract><pub>IEEE</pub><doi>10.1109/RFM.2011.6168776</doi><tpages>5</tpages></addata></record> |
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subjects | Antenna Array Antennas Approximation methods Dielectric Resonator Antenna Dielectrics Dual segments Gain Monitoring Reflector Resonant frequency Two element array Wideband |
title | Design and analysis of Dual segments two element array antenna for wideband applications |
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