vti_encoding:SR|utf8-nl vti_author:SR|Slim-PC\\SlimSly vti_modifiedby:SR|Slim-PC\\SlimSly vti_timelastmodified:TR|19 Apr 2016 10:46:50 -0000 vti_timecreated:TR|23 Jan 2015 07:58:12 -0000 vti_title:SR|Design and Analysis of 15.4dBi, 8-Element Phased Array Dipole Antenna resonating at 2.0GHz for Mobile Communication Applications vti_extenderversion:SR|12.0.0.0 vti_backlinkinfo:VX| vti_nexttolasttimemodified:TR|31 Jan 2015 06:11:12 -0000 vti_cacheddtm:TX|19 Apr 2016 10:46:50 -0000 vti_filesize:IR|9480 vti_cachedtitle:SR|Design and Analysis of 15.4dBi, 8-Element Phased Array Dipole Antenna resonating at 2.0GHz for Mobile Communication Applications vti_cachedbodystyle:SR| vti_cachedlinkinfo:VX|H|favicon.ico Q|default.css Q|headerpicture.css S|images/sjp_logo.jpg A|search.php H|http://www.sjpub.org H|http://www.sjpub.org/journals.html H|http://www.sjpub.org/sjp.html H|http://www.sjpub.org/submit.html H|http://www.sjpub.org/sjeeditorial.html H|http://www.sjpub.org/aboutus.html 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NHHS|http://www.sjpub.org/authorfaq.html NHHS|http://www.sjpub.org/joineditors.html NHHS|http://www.sjpub.org/joinreviewers.html NHHS|http://www.sjpub.org/sitemap.html vti_cachedneedsrewrite:BR|false vti_cachedhasbots:BR|false vti_cachedhastheme:BR|false vti_cachedhasborder:BR|false vti_metatags:VR|HTTP-EQUIV=Content-Type text/html;\\ charset=iso-8859-1 citation_author M\\ .\\ O.\\ Alade citation_author E.\\ P.\\ Ogherowo citation_title Design\\ and\\ Analysis\\ of\\ 15.4dBi,\\ 8-Element\\ Phased\\ Array\\ Dipole\\ Antenna\\ resonating\\ at\r\n2.0GHz\\ for\\ Mobile\\ Communication\\ Applications citation_pdf_url http://www.sjpub.org/sjp/sjp-162.pdf citation_year 2015 citation_online_date 2015 citation_journal_title Science\\ Journal\\ of\\ Physics citation_abstract This\\ paper\\ presents\\ the\\ design\\ and\\ simulation\\ of\\ the\\ proposed\r\n15.4dBi,\\ 8-element\\ phased\\ array\\ dipole\\ antenna\\ at\\ 2.0GHz\\ for\r\nmobile\\ communication\\ applications\\ using\\ MOMNEC2\\ and\r\narraycalV2.4\\ simulators.\\ The\\ paper\\ considered\\ the\\ effects\\ of\r\nchanging\\ the\\ magnitude\\ and\\ phase\\ excitation\\ of\\ the\\ signal\\ to\r\neach\\ element\\ while\\ keeping\\ the\\ geometrical\\ configuration\\ of\r\nthe\\ antenna\\ uniform.\\ The\\ optimized\\ results\\ show\\ that\\ the\r\nsimulated\\ value\\ of\\ directivity\\ D\\ is\\ 15.4dBi\\ which\\ is\\ 0.3\\ higher\r\nthan\\ the\\ chosen\\ design\\ value\\ of\\ 15.1dBi.\\ Also,\\ there\\ is\\ a\\ slight\r\nvariation\\ in\\ the\\ -3dB\\ beamwidth\\ values;\\ the\\ simulated\\ value\\ is\r\n15o\\ while\\ the\\ designed\\ value\\ is\\ 12.7o.\\ The\\ analysis\\ also\\ show\r\nthat\\ the\\ minimum\\ computed\\ SWR\\ is\\ 1.36dB,\\ and\\ the\r\ncomputed\\ reflection\\ coefficient\\ and\\ return\\ loss\\ are\r\nrespectively\\ 0.15\\ and\\ 16.3dB,\\ which\\ show\\ that\\ the\r\nimpedance\\ bandwidth\\ of\\ the\\ antenna\\ is\\ 1575\\ –\\ 2460MHz. dc.rights http://creativecommons.org/licenses/by/3.0/ citation_volume 2013 citation_publisher Science\\ Journal\\ Publication citation_issn 2276-6367 citation_abstract_html_url http://www.sjpub.org/sjp/abstract/sjp-162.html vti_charset:SR|iso-8859-1