Keyword search (4,163 papers available)

"Kishk AA" Authored Publications:

Title Authors PubMed ID
1 Polarisation reconfigurable anisotropic dielectric resonator antenna Danesh S; Abedian M; Khalily M; Xiao P; Tafazolli R; Kishk AA; 40169847
ENCS
2 Dual-Band Antenna Array Fed by Ridge Gap Waveguide with Dual-Periodic Interdigital-Pin Bed of Nails Chen B; Chen X; Cheng X; Da Y; Liu X; Gao S; Kishk AA; 39204813
ENCS
3 Ultra-thin flexible rectenna integrated with power management unit for wireless power harvester/charging of smartwatch/wristband Singh N; Khan T; Kumar S; Kanaujia BK; Choi HC; Kim KW; Rambabu K; Rengarajan SR; Kishk AA; 38548782
CONCORDIA
4 Advanced Dielectric Resonator Antenna Technology for 5G and 6G Applications Zhang Y; Ogurtsov S; Vasilev V; Kishk AA; Caratelli D; 38474958
ENCS
5 Joint frequency space design approach for efficient planar frequency diverse arrays Hasheminasab M; Cheldavi A; Kishk AA; 37482579
ENCS
6 Millimeter-wave planar antenna array augmented with a low-cost 3D printed dielectric polarizer for sensing and internet of things (IoT) applications Al-Alem Y; Sifat SM; Antar YMM; Kishk AA; 37316512
ENCS
7 High isolation circularly polarized in-band full-duplex anisotropic dielectric resonator antenna Abedian M; Khalily M; Wang F; Xiao P; Tafazolli R; Kishk AA; 37045877
ENCS
8 High gain low-cost antenna based on the utilization of diffracted fields from semi-ring shape dielectric edges Al-Alem Y; Sifat SM; Antar YMM; Kishk AA; 35411056
ENCS

 

Title:Polarisation reconfigurable anisotropic dielectric resonator antenna
Authors:Danesh SAbedian MKhalily MXiao PTafazolli RKishk AA
Link:https://pubmed.ncbi.nlm.nih.gov/40169847/
DOI:10.1038/s41598-025-94491-3
Publication:Scientific reports
Keywords:
PMID:40169847 Category: Date Added:2025-04-02
Dept Affiliation: ENCS
1 5G & 6G Innovation Centres (5GIC & 6GIC), Institute for Communication Systems (ICS), University of Surrey, Guildford, GU2 7XH, UK.
2 HID Global, GU10 5EH, Farnham, UK.
3 5G & 6G Innovation Centres (5GIC & 6GIC), Institute for Communication Systems (ICS), University of Surrey, Guildford, GU2 7XH, UK. m.khalily@surrey.ac.uk.
4 Department of Electrical and Computer Engineering, Concordia University, Montreal, Canada.

Description:

A novel polarization reconfigurable anisotropic dielectric resonator antenna (ADRA) is presented utilizing a new modulation scheme to exploit the degree of freedom in the polarization domain. The ADRA comprises periodic assembly dielectric resonators with two different dielectrics constant, equal in size, a vertically positioned metal strip, one varactor diode, and six PIN diode switches. The modulation scheme utilizes the tilt angle and axial ratio (AR) of a wireless signal to convey additional information, enabling the realization of different working modes ranging from circular polarization (CP) to nearly linear polarization (LP). The proposed modulation scheme yields significantly better bit error rate (BER) performance and higher spectral efficiency in bits/s/Hz/antenna. Additionally, the paper presents an antenna design capable of generating an arbitrary polarization state, highlighting the system benefits of polarization modulation. Post-fabrication, the proposed approach is validated by comparing simulated and measured results. The proposed antenna provides a total efficiency higher than 93% in the desired frequency bands and consistent gain at approximately 7.64 dBi and 7.09 dBi at 3.8 GHz, with the impedance matching bandwidth ranging from 3.53 to 3.90 GHz and 3.56 to 3.91 GHz fully overlapping across all polarization states for the simulated and measured results, respectively. Experimental results affirm the robust performance of the proposed ADRA.





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