TY - GEN
T1 - Dual-Port Microstrip-Fed Slot Antenna with Filtering Band for UWB Wireless Networks
AU - Islam, Tanvir
AU - Parchin, Naser Ojaroudi
AU - Amar, Ahmed S.I.
AU - Alibakhshikenari, Mohammad
AU - Mohassieb, Shaimaa Ali
N1 - Publisher Copyright:
© 2023 IEEE.
PY - 2023
Y1 - 2023
N2 - This study introduces a novel dual-port MIMO slot antenna meticulously tailored for UWB wireless communications, with a notable emphasis on orchestrating efficient filtering the WLAN band. The fundamental construct entails the incorporation of a pair of ingeniously modified arc-shaped structures, each assuming the role of radiation stubs. These are harmoniously complemented by a shared ground plane, collectively orchestrated within a planar configuration that showcases a spacious circular-ring slot. Furthermore, the arc-shaped stubs are adorned with a symmetrical pairing of rotated L-shaped slits, strategically conceived to usher forth the generation of a filtering notch. An extensive assessment of the study's outcomes reveals that the antenna system's operational prowess is pronounced within the frequency expanse of 3 GHz to 10.7 GHz, thereby engendering comprehensive coverage across the UWB spectrum. The meticulous evaluation spans a gamut of performance metrics, encompassing the examination of scattering parameters, three-dimensional radiation patterns, efficiency, and gain levels. The findings compellingly manifest that the suggested low-profile UWB antenna design efficaciously attains the desirable performance thresholds, endowing it with considerable potential to assume a pivotal role within the realm of advanced wireless communication endeavors.
AB - This study introduces a novel dual-port MIMO slot antenna meticulously tailored for UWB wireless communications, with a notable emphasis on orchestrating efficient filtering the WLAN band. The fundamental construct entails the incorporation of a pair of ingeniously modified arc-shaped structures, each assuming the role of radiation stubs. These are harmoniously complemented by a shared ground plane, collectively orchestrated within a planar configuration that showcases a spacious circular-ring slot. Furthermore, the arc-shaped stubs are adorned with a symmetrical pairing of rotated L-shaped slits, strategically conceived to usher forth the generation of a filtering notch. An extensive assessment of the study's outcomes reveals that the antenna system's operational prowess is pronounced within the frequency expanse of 3 GHz to 10.7 GHz, thereby engendering comprehensive coverage across the UWB spectrum. The meticulous evaluation spans a gamut of performance metrics, encompassing the examination of scattering parameters, three-dimensional radiation patterns, efficiency, and gain levels. The findings compellingly manifest that the suggested low-profile UWB antenna design efficaciously attains the desirable performance thresholds, endowing it with considerable potential to assume a pivotal role within the realm of advanced wireless communication endeavors.
KW - Dual-polarized antenna
KW - frequency band filtering
KW - MIMO antenna
KW - UWB systems
KW - WLAN
UR - https://www.scopus.com/pages/publications/85179556407
U2 - 10.1109/ICEEM58740.2023.10319568
DO - 10.1109/ICEEM58740.2023.10319568
M3 - Conference Publication
AN - SCOPUS:85179556407
T3 - ICEEM 2023 - 3rd IEEE International Conference on Electronic Engineering
BT - ICEEM 2023 - 3rd IEEE International Conference on Electronic Engineering
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 3rd IEEE International Conference on Electronic Engineering, ICEEM 2023
Y2 - 7 October 2023 through 8 October 2023
ER -