2007
DOI: 10.1163/156939307780667355
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A Study of Planar Printed Dipole Antennas for Wireless Communication Applications

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Cited by 23 publications
(18 citation statements)
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“…A wide range of planar printed antennas for wireless communication has been carefully presented and investigated in [47][48][49].…”
Section: Simulation Resultsmentioning
confidence: 99%
“…A wide range of planar printed antennas for wireless communication has been carefully presented and investigated in [47][48][49].…”
Section: Simulation Resultsmentioning
confidence: 99%
“…The relative permittivity and conductivity of individual components were set to comply with industrial standards. In addition, definitions in [21][22][23] were adopted for material parameters involved in the SAM phantom head. In order to accurately characterize the performance over broad frequency range, dispersive models for all the dielectrics were adopted during the simulation [21].…”
Section: Model Descriptionmentioning
confidence: 99%
“…The head models used in this study was obtained from MRI-based head model through the whole brain Atlas website. Six types of tissues, i.e., bone, brain, muscle, eye ball, fat, and skin were involved in this model [22][23][24][25][26]. Table 2 shows their dielectric properties [23,24].…”
Section: Lossy-drude Modelmentioning
confidence: 99%
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“…Single layer microstrip antennas have very narrow bandwidth, but using multi-layered configurations like proximity coupled microstrip antennas or aperture coupled microstrip antennas, higher bandwidth can be achieved [12][13][14][15][16][17][18]. Design and development of compact printed antennas for wireless communications are also reported [19][20][21][22][23][24][25][26][27][28]. A thin wideband microstrip patch using two parallel slots is designed for WLAN [19].…”
Section: Introductionmentioning
confidence: 99%