Compact asymmetric-slotted-slit patch based circularly-polarized antenna with reactive impedance surface substrate
A compact, asymmetric-slotted-slit-microstrip patch, based antenna on a reactive impedance surface (RIS) is proposed and studied for the circularly polarized (CP) radiation.The antenna consists of a slotted-slit-microstrip patch on a RIS substrate. The CP radiation with compact size is achieved by a...
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sg-ntu-dr.10356-1022532020-03-07T14:02:44Z Compact asymmetric-slotted-slit patch based circularly-polarized antenna with reactive impedance surface substrate Agarwal, Kush Nasimuddin Alphones, Arokiaswami School of Electrical and Electronic Engineering DRNTU::Engineering::Electrical and electronic engineering A compact, asymmetric-slotted-slit-microstrip patch, based antenna on a reactive impedance surface (RIS) is proposed and studied for the circularly polarized (CP) radiation.The antenna consists of a slotted-slit-microstrip patch on a RIS substrate. The CP radiation with compact size is achieved by asymmetric slots and slits cut along the diagonal and orthogonal directions of the patch radiator. The asymmetric slotted-slit-microstrip on the RIS structure is used for further miniaturization of the antenna with CP radiation. The measured results of the proposed antenna are 2.1% (2.625–2.68 GHz) for 3-dB axial ratio bandwidth, 9.5% (2.575–2.82 GHz) for 10-dB return loss bandwidth, and 3.87 dBic for gain at the boresight. The patch radiator size is 0.187 λ × 0.179 λ on a low cost FR4 substrate at 2.6 GHz. 2013-07-11T03:34:04Z 2019-12-06T20:52:14Z 2013-07-11T03:34:04Z 2019-12-06T20:52:14Z 2012 2012 Journal Article Agarwal, K., Nasimuddin., Alphones, A. (2012). Compact asymmetric-slotted-slit patch based circularly-polarized antenna with reactive impedance surface substrate. Microwave and optical technology letters, 54(11), 2505-2510. https://hdl.handle.net/10356/102253 http://hdl.handle.net/10220/11181 10.1002/mop.27147 en Microwave and optical technology letters © 2012 Wiley Periodicals, Inc. |
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DRNTU::Engineering::Electrical and electronic engineering Agarwal, Kush Nasimuddin Alphones, Arokiaswami Compact asymmetric-slotted-slit patch based circularly-polarized antenna with reactive impedance surface substrate |
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A compact, asymmetric-slotted-slit-microstrip patch, based antenna on a reactive impedance surface (RIS) is proposed and studied for the circularly polarized (CP) radiation.The antenna consists of a slotted-slit-microstrip patch on a RIS substrate. The CP radiation with compact size is achieved by asymmetric slots and slits cut along the diagonal and orthogonal directions of the patch radiator. The asymmetric slotted-slit-microstrip on the RIS structure is used for further miniaturization of the antenna with CP radiation. The measured results of the proposed antenna are 2.1% (2.625–2.68 GHz) for 3-dB axial ratio bandwidth, 9.5% (2.575–2.82 GHz) for 10-dB return loss bandwidth, and 3.87 dBic for gain at the boresight. The patch radiator size is 0.187 λ × 0.179 λ on a low cost FR4 substrate at 2.6 GHz. |
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School of Electrical and Electronic Engineering |
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School of Electrical and Electronic Engineering Agarwal, Kush Nasimuddin Alphones, Arokiaswami |
format |
Article |
author |
Agarwal, Kush Nasimuddin Alphones, Arokiaswami |
author_sort |
Agarwal, Kush |
title |
Compact asymmetric-slotted-slit patch based circularly-polarized antenna with reactive impedance surface substrate |
title_short |
Compact asymmetric-slotted-slit patch based circularly-polarized antenna with reactive impedance surface substrate |
title_full |
Compact asymmetric-slotted-slit patch based circularly-polarized antenna with reactive impedance surface substrate |
title_fullStr |
Compact asymmetric-slotted-slit patch based circularly-polarized antenna with reactive impedance surface substrate |
title_full_unstemmed |
Compact asymmetric-slotted-slit patch based circularly-polarized antenna with reactive impedance surface substrate |
title_sort |
compact asymmetric-slotted-slit patch based circularly-polarized antenna with reactive impedance surface substrate |
publishDate |
2013 |
url |
https://hdl.handle.net/10356/102253 http://hdl.handle.net/10220/11181 |
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1681041429440233472 |