An Electrical Model to U-Slot Patch Antenna with Circular Polarization

التفاصيل البيبلوغرافية
العنوان: An Electrical Model to U-Slot Patch Antenna with Circular Polarization
المؤلفون: Ghnimi Said, Guesmi Chaouki, Gharsallah Ali, Necibi Omrane
المصدر: International Journal of Advanced Computer Science and Applications. 8
بيانات النشر: The Science and Information Organization, 2017.
سنة النشر: 2017
مصطلحات موضوعية: General Computer Science, Computer science, Acoustics, Dielectric, Antenna rotator, Antenna tuner, law.invention, Radiation pattern, Folded inverted conformal antenna, Microstrip antenna, law, J-pole antenna, Dipole antenna, Monopole antenna, Circular polarization, Computer Science::Information Theory, Patch antenna, Coaxial antenna, HFSS, business.industry, Loop antenna, Antenna aperture, Antenna measurement, Antenna factor, Antenna efficiency, Periscope antenna, Antenna noise temperature, Antenna (radio), Coaxial, Telecommunications, business
الوصف: The microstrip antenna is one of the best antenna structures, due to its low cost and compact design. In this paper, a coaxial feed circularly polarized square patch antenna is designed using the U-slot. The proposed antenna is suited for the RFID readers in the SHF band. This structure of antenna of FR-4 substrate (dielectric constant = 3.5), is capable to cover the range of frequency of 2.4 to 2.5GHz. The size of patch is 25*25 mm2. An equivalent electrical model of this antenna was proposed and simulated by the ADS software. The simulated gain is 4.189 dBi and S11 bandwidth is about 100 MHz. Analysis and modeling of the proposed antenna was carried out using the CST and HFSS simulator based on the finite element method. The simulation results obtained are presented and discussed.
تدمد: 2156-5570
2158-107X
URL الوصول: https://explore.openaire.eu/search/publication?articleId=doi_________::4e76ce008d165f25f8b2249d36ae0131
https://doi.org/10.14569/ijacsa.2017.080310
حقوق: OPEN
رقم الأكسشن: edsair.doi...........4e76ce008d165f25f8b2249d36ae0131
قاعدة البيانات: OpenAIRE