@inproceedings{00a1eb22b2bf4a24adc444e1d1b765fe,
title = "A Printed Crossed-Dipole mmWave Antenna with Efficient Omnidirectional Circular Polarization for Wireless Surveillance in IOT Applications",
abstract = "This paper presents a printed antenna for millimeter (mmWave) applications. The antenna is formed by a slotted rectangular patch and printed crossed dipoles, and fed by a quarter-wavelength transmission line. The structure size is only 11×15×5mm3. To retain the antenna's performance specifications, a partial ground plane was used. With an efficiency of \textasciitilde{}95\% and a gain of \textasciitilde{}5 dBi, this setup enables omnidirectional circular polarization at a frequency of 35 GHz. From the application viewpoint, the proposed design is highly suitable for wireless surveillance in IOT applications due to its omnidirectional radiation pattern.",
keywords = "circular polarization, high efficiency, millimeter wave, omnidirectional pattern, printed dipole",
author = "Shahanawaz Kamal and Ubaid Ullah and Slawomir Koziel",
note = "Publisher Copyright: {\textcopyright} 2022 IEEE.; 9th International Conference on Internet of Things, Systems, Management and Security, IOTSMS 2022 ; Conference date: 28-11-2022 Through 01-12-2022",
year = "2022",
doi = "10.1109/IOTSMS58070.2022.10061943",
language = "English",
series = "2022 9th International Conference on Internet of Things, Systems, Management and Security, IOTSMS 2022",
publisher = "Institute of Electrical and Electronics Engineers Inc.",
pages = "1--4",
editor = "\{Lloret Mauri\}, Jaime and Larbi Boubchir and Yaser Jararweh and Elhadj Benkhelifa and Imad Saleh",
booktitle = "2022 9th International Conference on Internet of Things, Systems, Management and Security, IOTSMS 2022",
address = "United States",
}