The 8th Electrical Engineering/ Electronics, Computer, Telecommunications and Information Technology (ECTI) Association of Thai 2011
DOI: 10.1109/ecticon.2011.5947803
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Unidirectional CPW-fed slot antenna using metasurface

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Cited by 9 publications
(3 citation statements)
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“…This value shifts the operating frequency to 2.45 GHz with a small return loss, i.e., -27.5 dB, wide-10 dB bandwidth of 730 MHz (1.9-2.63 GHz) and total gain of 2.52 dB. An immediate future work is to apply further gain enhancement and size miniaturization techniques such as the Metasurface Superstare (MSS) [14][15][16] to increase gain and using series of parallel strip lines [17] or loading wires [18] to achieve further miniaturization. …”
Section: Gain Enhancement Of Cpw-feed Square Slot Antennamentioning
confidence: 99%
“…This value shifts the operating frequency to 2.45 GHz with a small return loss, i.e., -27.5 dB, wide-10 dB bandwidth of 730 MHz (1.9-2.63 GHz) and total gain of 2.52 dB. An immediate future work is to apply further gain enhancement and size miniaturization techniques such as the Metasurface Superstare (MSS) [14][15][16] to increase gain and using series of parallel strip lines [17] or loading wires [18] to achieve further miniaturization. …”
Section: Gain Enhancement Of Cpw-feed Square Slot Antennamentioning
confidence: 99%
“…Several other techniques need to be applied in order to get the radiation pattern unidirectional [16].…”
Section: Far Field Radiation Patternmentioning
confidence: 99%
“…Also, there is a risk it might not deploy, which contributes to the likelihood of mission failure. In terms of size, the antenna in [11] has the smallest size of 75 mm×75 mm but its main limitation, as pointed out by the authors, is the resulting low gain, i.e., 1.53 dBi, because of its bi-directional radiation [12]. To solve this problem, one common approach is to redirect the back radiation pattern forward by placing a backing metallic reflector that is λ/4 away from the antenna [8].…”
Section: Introductionmentioning
confidence: 99%