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In this work, at first the PIFA antenna for the triple band operation has been investigated and studied in detail. Further, the modified PIFA antenna design has been studied for BLE commutations of a wearable device. The proposed antenna was also compared with the meandered dipole antenna as a reference antenna which is widely used for BLE communication due to its compact size. While the reference antenna has a smaller size, it suffers a shift in frequency response when placed on the tissue. On the other hand, the proposed antenna shows little difference whether it is placed on a tissue or in…mehr

Produktbeschreibung
In this work, at first the PIFA antenna for the triple band operation has been investigated and studied in detail. Further, the modified PIFA antenna design has been studied for BLE commutations of a wearable device. The proposed antenna was also compared with the meandered dipole antenna as a reference antenna which is widely used for BLE communication due to its compact size. While the reference antenna has a smaller size, it suffers a shift in frequency response when placed on the tissue. On the other hand, the proposed antenna shows little difference whether it is placed on a tissue or in the air, because of the inclusion of a complete ground plane beneath the main radiation patch. The antenna embedded in the wearable device enables a reliable connection for various scenarios of orientations and postures of the user.
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Autorenporträt
Ashwini Kumar Arya (Senior Member, IEEE) is currently working as an Associate Professor in the School of Engineering at Jawaharlal Nehru University, New Delhi, India. His research interests include the applications of radio frequency engineering, electromagnetic theory in wireless communications, and antenna design technologies.