Dual/circular polarization beam shaping of time-modulated plasma-based magneto-electric dipole antenna arrays

被引:0
作者
Hend Abd El-Azem Malhat
Anas Saber Zainud-Deen
机构
[1] Menoufia University,Faculty of Electronic Engineering
[2] Egyptian Russian University,Faculty of Engineering
[3] ERU,undefined
来源
Optical and Quantum Electronics | 2022年 / 54卷
关键词
Magneto-electric antenna; Circular polarization; Plasma antenna; Time-modulation;
D O I
暂无
中图分类号
学科分类号
摘要
This paper introduces a plasma based circularly polarized (CP) magneto-electric (ME) dipole antenna as a building element of time-modulated array (TMA). The single plasma ME-dipole element introduces impedance matching bandwidth of 2.75 GHz and high gain of 9.1 dBi. The element maintains right-hand circular polarization  (RHCP) characteristics of 320 MHz with broadside wide beam radiation. A linear arrangement of 16-element spaced by 0.65λ and connected with 16 RF-switches with periodic switching frequency of 100 MHz is investigated. The switching time-sequences are estimated using PSO through minimizing the error between the desired and calculated radiation patterns. Different shapes of beams are designed using controlled on-time switching sequences like pencil, flat-top, sum, and difference patterns. The side-lobe levels (SLL) are controlled below − 25 dB for the designed beams. Planner arrangement of 8 × 8 plasma ME-dipole elements are investigated. Pencil-pencil or pencil-flat top beams are designed at the fundamental and first harmonic frequencies. A sequential arrangement of 4- and 16- elements are designed to improve the circular polarization radiation characteristics. By controlling the switching time duration and delay between array elements, two modes of electric fields with orthogonal phase and equal amplitudes are generated. Circular polarization bandwidth of 1.3 GHz is obtained with high gain of 15.3 dBi and 21.9 dBi for the 4-element array and 16-element array, respectively.
引用
收藏
相关论文
共 26 条
  • [21] A Low-Profile Quasi-Loop Magneto-Electric Dipole Antenna Featuring a Wide Bandwidth and Circular Polarization for 5G mm Wave Device-to-Device Communication
    Kamal, Shahanawaz
    Bin Ain, Mohd Fadzil
    Ullah, Ubaid
    Mohammed, Abdullahi S. B.
    Hussin, Roslina
    Omar, Mohamad Faiz Bin Mohamed
    Najmi, Fathul
    Ahmad, Zainal Arifin
    Ab Rahman, Mohd Fariz
    Mahmud, Mohd Nazri
    Othman, Mohamadariff
    Mohamed, Julie Juliewatty
    JOURNAL OF ELECTROMAGNETIC ENGINEERING AND SCIENCE, 2022, 22 (04): : 459 - 471
  • [22] Aperture-Shared Reflectarray Antenna for Sub-6 GHz and Mm-Wave Dual-Band Dual Circular Polarization Independent Beam-Shaping
    Zhu, Jianfeng
    Yang, Yang
    Xue, Quan
    2024 IEEE INTERNATIONAL WORKSHOP ON ANTENNA TECHNOLOGY, IWAT, 2024, : 213 - 215
  • [23] Simultaneous Improvement of array factor directivity and side lobe level of time-modulated linear antenna arrays using opposition-based harmony search algorithm
    Ram, Gopi
    Mandal, Durbadal
    Kar, Rajib
    Ghoshal, Sakti Prasad
    INTERNATIONAL JOURNAL OF NUMERICAL MODELLING-ELECTRONIC NETWORKS DEVICES AND FIELDS, 2017, 30 (3-4)
  • [24] A Dual-Wideband and High Gain Magneto-Electric Dipole Antenna and Its 3D MIMO System With Metasurface for 5G/WiMAX/WLAN/X-Band Applications
    Feng, Botao
    Lai, Jiexin
    Zeng, Qingsheng
    Chung, Kwok L.
    IEEE ACCESS, 2018, 6 : 33387 - 33398
  • [25] Off-Body Antenna Dual-Beam Linear to Circular Polarization Converter Based on Quarter-wave Cross-Slot Frequency Selective Surface
    Habani, Amine
    Nedil, Mourad
    Denidni, Tayeb A.
    Talbi, Larbi
    2018 IEEE ANTENNAS AND PROPAGATION SOCIETY INTERNATIONAL SYMPOSIUM ON ANTENNAS AND PROPAGATION & USNC/URSI NATIONAL RADIO SCIENCE MEETING, 2018, : 2031 - 2032
  • [26] 3D Printed Directive Beam-Steering Antenna Based on Gradient Index Flat Lens With an Integrated Polarizer for Dual Circular Polarization at W-Band
    Melendro-Jimenez, J.
    Sanchez-Olivares, P.
    Tamayo-Dominguez, A.
    Sun, X.
    Fernandez-Gonzalez, J. M.
    IEEE TRANSACTIONS ON ANTENNAS AND PROPAGATION, 2023, 71 (01) : 1059 - 1064