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Dielectric material selection of microstrip patch antenna for wireless communication applications using Ashby's approach

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dc.contributor.author Gupta, Navneet
dc.contributor.author Kumar, Rajneesh
dc.date.accessioned 2023-02-06T09:45:15Z
dc.date.available 2023-02-06T09:45:15Z
dc.date.issued 2014-07
dc.identifier.uri https://www.cambridge.org/core/journals/international-journal-of-microwave-and-wireless-technologies/article/abs/dielectric-material-selection-of-microstrip-patch-antenna-for-wireless-communication-applications-using-ashbys-approach/26D76265B535B2152DE43759464C3484#
dc.identifier.uri http://dspace.bits-pilani.ac.in:8080/xmlui/handle/123456789/8995
dc.description.abstract In this paper, material selection has been done for dielectric substrate material in microstrip patch antenna (MPA) for three distinct classes of wireless communication applications using Ashby's approach. This material selection procedure is based on the creation and evaluation of Ashby's chart of different material indices. These material indices in turn affect the device performance indices, which decide the best possible dielectric material to be used as substrate for MPAs. In this work, quality factor, relative permittivity, and temperature coefficient of resonant frequency are chosen as material indices of MPA's dielectric substrate to get relevant performances. Ashby's selection chart shows that 0.75MgAl2O4–0.25TiO2 material for millimeter waves applications, Ca[(L1/3Nb2/3)0.85Ti0.15]O3−δ for mobile base station applications, and (Ba0.95Ca0.05)O–Sm2O3–4.5TiO2 ceramic for mobile phone miniaturization applications are the promising materials that allows best overall performance in MPAs for wireless communication. en_US
dc.language.iso en en_US
dc.publisher Cambridge University Press en_US
dc.subject EEE en_US
dc.subject Material selection en_US
dc.subject Ashby's approach en_US
dc.subject Microstrip patch antenna en_US
dc.subject Wireless communication en_US
dc.subject Dielectric materials en_US
dc.title Dielectric material selection of microstrip patch antenna for wireless communication applications using Ashby's approach en_US
dc.type Article en_US


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