Application of Theory of Characteristics Modes for Bandwidth Enhancement of a Miniaturized Minkowski Fractal Antenna

被引:5
|
作者
Dhara, R. [1 ]
Govil, M. C. [2 ,3 ]
Kundu, T. [4 ]
机构
[1] Natl Inst Technol Sikkim, Dept Elect & Commun Engn, Ravangla 737139, India
[2] Malviya Natl Inst Technol, Dept Comp Sci Engn, Jaipur 302017, Rajasthan, India
[3] Natl Inst Technol Sikkim, Dept Comp Sci Engn, Ravangla 737139, India
[4] Natl Inst Technol Sikkim, Dept Chem, Ravangla 737139, India
关键词
Iteration factor; L band; Minkowski fractal geometry; Size reduction; S band; Theory of characteristic modes (TCM); Ultra-wide band; MONOPOLE ANTENNA; DESIGN; IMPLEMENTATION; SHAPE; ANN;
D O I
10.1080/03772063.2021.1999866
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
This article presents a miniaturized modified Minkowski fractal antenna with enhanced linearly polarized impedance bandwidth (IBW) in the lower frequency region. Applying theory of characteristic modes (TCM) analysis on a second iterated modified Minkowski radiator without feeding structure, modal currents and their corresponding modal fields (radiation patterns) were determined to recognize symmetric dominant modes to be specifically excited to generate the required radiation pattern. It gave direction for choosing quarter-wave microwave line feeding as the feed of choice to excite the four desired modes at 2.7, 5.7, 5.9, and 8.7 GHz and providing excellent impedance matching to generate the very wide IBW. Measured results matched well with simulations done using Ansys HFSS 2020R1. Measured IBW is 9.7 GHz (160%), from 1.2 to 10.9 GHz, with center resonance frequency (f(rc)) at 6.05 GHz, whereas simulated IBW is 9.4 GHz (162%), from 1.1 to 10.5 GHz with f(rc) at 5.8 GHz. The antenna size is 36 x 34 x 1.6 mm(3) (0.216 lambda(gL) x 0.204 lambda(gL) where at lower resonating frequency f(rL) = 1.1 GHz, lambda(gL) is the guided wavelength) with 82.24% reduction in size. This antenna may be utilized for "L", "S" band and UWB wireless communication.
引用
收藏
页码:5919 / 5934
页数:16
相关论文
共 50 条
  • [1] Design of a miniaturized CPW fed Z-shaped monopole antenna using theory of characteristics modes for bandwidth enhancement
    Reshmi Dhara
    Sādhanā, 2021, 46
  • [2] Design of a miniaturized CPW fed Z-shaped monopole antenna using theory of characteristics modes for bandwidth enhancement
    Dhara, Reshmi
    SADHANA-ACADEMY PROCEEDINGS IN ENGINEERING SCIENCES, 2021, 46 (02):
  • [3] A novel miniaturized Koch-Minkowski hybrid fractal antenna
    Jaffri, Zain Ul Abidin
    Ahmad, Zeeshan
    Kabir, Asif
    Bukhari, Syed Sabahat Hussain
    MICROELECTRONICS INTERNATIONAL, 2022, 39 (01) : 22 - 37
  • [4] A Miniaturized Circularly Polarized Microstrip Antenna with Bandwidth Enhancement
    Li, Jianxing
    Zhang, Anxue
    Joines, William T.
    Liu, Qing Huo
    2016 IEEE ANTENNAS AND PROPAGATION SOCIETY INTERNATIONAL SYMPOSIUM, 2016, : 41 - 42
  • [5] Gain Enhancement of Miniaturized Fractal Antenna with Help of Complementary Fractal Lens
    Rao, Neeraj
    WIRELESS PERSONAL COMMUNICATIONS, 2022, 123 (01) : 229 - 240
  • [6] Gain Enhancement of Miniaturized Fractal Antenna with Help of Complementary Fractal Lens
    Neeraj Rao
    Wireless Personal Communications, 2022, 123 : 229 - 240
  • [7] Minkowski Fractal Dielectric Resonator Antenna for UWB Application
    Huda, Shabana
    Kannakar, Anirban
    Saha, Anuradha
    2021 6TH INTERNATIONAL CONFERENCE FOR CONVERGENCE IN TECHNOLOGY (I2CT), 2021,
  • [8] Size reduction and bandwidth enhancement of snowflake fractal antenna
    Mirzapour, B.
    Hassani, H. R.
    IET MICROWAVES ANTENNAS & PROPAGATION, 2008, 2 (02) : 180 - 187
  • [9] A Novel Approach to Bandwidth Enhancement of Multi - fractal Antenna
    Yadav, Sanjeev
    Jain, Pushpanjali
    Dadhich, Ajay
    2014 INTERNATIONAL CONFERENCE ON SIGNAL PROPAGATION AND COMPUTER TECHNOLOGY (ICSPCT 2014), 2014, : 205 - 208
  • [10] Minkowski Fractal Circularly Polarized Planar Antenna for GPS Application
    Joy, Salini
    Natarajamani, S.
    Vaitheeswaran, S. M.
    8TH INTERNATIONAL CONFERENCE ON ADVANCES IN COMPUTING & COMMUNICATIONS (ICACC-2018), 2018, 143 : 66 - 73