Circuit modeling for rectangular printed disc monopole antenna with slot for UWB system
In this paper, a circuit model is done for rectangular printed disc monopole antenna with slot for ultra wideband application. For this circuit modeling, patch cavity model consists of series resistor and inductor which represent the surface resistance and surface inductance with the combination of...
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my.uniten.dspace-294802024-04-18T10:35:10Z Circuit modeling for rectangular printed disc monopole antenna with slot for UWB system Heong O.K. Chakrabarty C.K. Hock G.C. 55096903900 6701755282 16021614500 Circuit modeling Slot UWB rectangular antenna Circuit theory Intelligent systems Monopole antennas Resonant circuits Ultra-wideband (UWB) Antenna structures Cavity model Circuit modeling Circuit models LC circuits Return loss Series resistor Slot Ultrawideband applications UWB system Slot antennas In this paper, a circuit model is done for rectangular printed disc monopole antenna with slot for ultra wideband application. For this circuit modeling, patch cavity model consists of series resistor and inductor which represent the surface resistance and surface inductance with the combination of LC circuit as the resonant circuit is introduced. Moreover, a slot is etched on the patch antenna and represented by a series LC circuit for its circuit model. The result is then repeated with modification done on the slot and also the circuit model. Finally return loss result for both antenna structure and circuit model were compared and discussed. � 2012 IEEE. Final 2023-12-28T06:30:11Z 2023-12-28T06:30:11Z 2012 Conference Paper 10.1109/ISMS.2012.58 2-s2.0-84859977797 https://www.scopus.com/inward/record.uri?eid=2-s2.0-84859977797&doi=10.1109%2fISMS.2012.58&partnerID=40&md5=a0a0b320abe1b65ce9959fc5b5e3a238 https://irepository.uniten.edu.my/handle/123456789/29480 6169794 727 731 Scopus |
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Circuit modeling Slot UWB rectangular antenna Circuit theory Intelligent systems Monopole antennas Resonant circuits Ultra-wideband (UWB) Antenna structures Cavity model Circuit modeling Circuit models LC circuits Return loss Series resistor Slot Ultrawideband applications UWB system Slot antennas |
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Circuit modeling Slot UWB rectangular antenna Circuit theory Intelligent systems Monopole antennas Resonant circuits Ultra-wideband (UWB) Antenna structures Cavity model Circuit modeling Circuit models LC circuits Return loss Series resistor Slot Ultrawideband applications UWB system Slot antennas Heong O.K. Chakrabarty C.K. Hock G.C. Circuit modeling for rectangular printed disc monopole antenna with slot for UWB system |
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In this paper, a circuit model is done for rectangular printed disc monopole antenna with slot for ultra wideband application. For this circuit modeling, patch cavity model consists of series resistor and inductor which represent the surface resistance and surface inductance with the combination of LC circuit as the resonant circuit is introduced. Moreover, a slot is etched on the patch antenna and represented by a series LC circuit for its circuit model. The result is then repeated with modification done on the slot and also the circuit model. Finally return loss result for both antenna structure and circuit model were compared and discussed. � 2012 IEEE. |
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55096903900 |
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55096903900 Heong O.K. Chakrabarty C.K. Hock G.C. |
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Conference Paper |
author |
Heong O.K. Chakrabarty C.K. Hock G.C. |
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Heong O.K. |
title |
Circuit modeling for rectangular printed disc monopole antenna with slot for UWB system |
title_short |
Circuit modeling for rectangular printed disc monopole antenna with slot for UWB system |
title_full |
Circuit modeling for rectangular printed disc monopole antenna with slot for UWB system |
title_fullStr |
Circuit modeling for rectangular printed disc monopole antenna with slot for UWB system |
title_full_unstemmed |
Circuit modeling for rectangular printed disc monopole antenna with slot for UWB system |
title_sort |
circuit modeling for rectangular printed disc monopole antenna with slot for uwb system |
publishDate |
2023 |
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1806426082804498432 |
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13.211869 |