Broadband body-worn antenna using a top-loaded pyramidal radiator

被引:1
|
作者
Jackson, Brad R. [1 ]
Merkley, Eric [2 ]
机构
[1] Calif State Univ Northridge, Elect & Comp Engn, Northridge, CA 91330 USA
[2] Queens Univ, Dept Elect & Comp Engn, Kingston, ON, Canada
关键词
broadband antennas; impedance matching; omnidirectional antennas; antenna radiation patterns; monopole antennas; antenna feeds; planar antennas; microwave antennas; flat ground plane; impedance bandwidth; radiation patterns; human body model; helmet antenna; broadband body-worn antenna; top-loaded pyramidal radiator; wide-bandwidth low-profile quasiomnidirectional antenna; emergency services; military applications; pyramid-shaped radiator; etched copper-clad microwave laminate; frequency; 890; 0 MHz to 13; 7; GHz; LOW-PROFILE; WIDE-BAND; UWB ANTENNA;
D O I
10.1049/iet-map.2019.0825
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
A wide-bandwidth low-profile quasi-omnidirectional antenna is presented and experimentally demonstrated when integrated with a helmet for emergency services or military applications. The antenna consists of a pyramid-shaped radiator that is top-loaded with an etched copper-clad microwave laminate with two shorting strips used to improve the input impedance matching, particularly for lower frequencies. The design and operation of the antenna are first introduced using a flat ground plane, and then experimental results are reported when it is installed on a helmet where the outer surface of the helmet is used as the ground plane. The results show a very wide impedance bandwidth from 890 MHz to 13.7 GHz (VSWR $\le $<= 3) and predominately monopole-like radiation patterns up to $\sim $similar to 11 GHz. The antenna has a height of $\lambda $lambda/16 at the lowest operating frequency of 890 MHz (21 mm). Simulation results with a human body model demonstrate the significantly improved omnidirectionality of the proposed helmet antenna compared to more conventional body-worn antennas used in some applications.
引用
收藏
页码:329 / 334
页数:6
相关论文
共 50 条
  • [31] Embroidered Multiband Body-Worn Antenna for GSM/PCS/WLAN Communications
    Wang, Zheyu
    Lee, Lanlin Z.
    Psychoudakis, Dimitris
    Volakis, John L.
    IEEE TRANSACTIONS ON ANTENNAS AND PROPAGATION, 2014, 62 (06) : 3321 - 3329
  • [32] Design Aspects of Body-Worn UWB Antenna for Body-Centric Communication: A Review
    Vivek Kumar
    Bharat Gupta
    Wireless Personal Communications, 2017, 97 : 5865 - 5895
  • [33] Design Aspects of Body-Worn UWB Antenna for Body-Centric Communication: A Review
    Kumar, Vivek
    Gupta, Bharat
    WIRELESS PERSONAL COMMUNICATIONS, 2017, 97 (04) : 5865 - 5895
  • [34] IMPEDANCE OF A TOP-LOADED ANTENNA OF ARBITRARY LENGTH OVER A CIRCULAR GROUNDED SCREEN
    WAIT, JR
    SURTEES, WJ
    JOURNAL OF APPLIED PHYSICS, 1954, 25 (05) : 553 - 555
  • [35] Low-Profile Top-Loaded Monopole Antenna with Oblique Shorting Pins
    Kim, Woo-Jin
    Michishita, Naobumi
    Yamada, Yoshihide
    2009 EUROPEAN MICROWAVE CONFERENCE, VOLS 1-3, 2009, : 1476 - 1479
  • [36] An Electrically Small Top-Loaded Mono-Cone Antenna with Ring Slot
    Keum, Kyoseung
    Choi, Jaehoon
    2020 INTERNATIONAL SYMPOSIUM ON ANTENNAS AND PROPAGATION (ISAP), 2021, : 555 - 556
  • [37] Detecting Physical Activities Using Body-Worn Accelerometers
    Chawathe, Sudarshan S.
    2020 IEEE INTERNATIONAL IOT, ELECTRONICS AND MECHATRONICS CONFERENCE (IEMTRONICS 2020), 2020, : 119 - 125
  • [38] Size Reduction of Series-Fed Two Dipole Array Antenna Using Top-Loaded Elements
    Yeo, Junho
    Lee, Jong-Ig
    MICROWAVE AND OPTICAL TECHNOLOGY LETTERS, 2013, 55 (10) : 2288 - 2293
  • [39] Compact Broadband Slot MIMO Antenna with A Stub-Loaded Radiator
    Chu, Qing-Xin
    Wu, Yu-Ting
    Xia, Xing-Xing
    2014 IEEE CONFERENCE ON ANTENNA MEASUREMENTS & APPLICATIONS (CAMA), 2014,
  • [40] Conformal Quad-Port UWB MIMO Antenna for Body-Worn Applications
    Govindan, Thennarasi
    Palaniswamy, Sandeep Kumar
    Kanagasabai, Malathi
    Kumar, Sachin
    Rama Rao, Thipparaju
    Alsath, Mohammed Gulam Nabi
    INTERNATIONAL JOURNAL OF ANTENNAS AND PROPAGATION, 2021, 2021