Gain Enhancement of Composite Photonic Crystal Microstrip Patch Antenna Inspired by Maxwell Garnett Model for C-Band, X-Band and Ku Band Applications

被引:0
|
作者
Mercy, P. Arockia Michael [1 ]
Wilson, K. S. Joseph [1 ]
机构
[1] Madurai Kamaraj Univ, Arul Anandar Coll, PG & Res Dept Phys, Madurai 625514, Tamilnadu, India
关键词
C-band; composite and photonic crystal substrate; Ku band; Maxwell Garnett effective medium theory; microstrip feedline; microstrip patch antenna; X-band; PERFORMANCE; DESIGN;
D O I
10.1002/crat.202300090
中图分类号
O7 [晶体学];
学科分类号
0702 ; 070205 ; 0703 ; 080501 ;
摘要
The latest developments in communication systems require an economical, light-weight, compact size, and excellent performance in microstrip patch antennas in order to meet the requirements of the upcoming implementation. The optical, electrical, and physical properties of different materials have an impact on the design of antennas. An innovative composite photonic crystal microstrip patch antenna with outstanding gain has been developed. For composites of fumed silica embedded in RT-Duroid dielectric material, the effective permittivity is calculated using the Maxwell-Garnett model. The performance of composite antennas for different volume fractions and various dielectric substrate thicknesses is studied. The resonance frequencies of composites also shift from the X-band to the C-band with an increase in volume concentration, which is suitable for wireless communication systems. This investigation provides a perspective on how composite substrates can represent a communication revolution by providing an alternative to substrates that are readily accessible commercially in situations when the material qualities are insufficient. The photonic crystal composite antenna records the highest gain of 13.89 dB with the coverage of C-band, X-band, and Ku-band, whereas the composite antenna reaches the best gain of 10 dB with the coverage of C-band and X-band. The current state of communication systems necessitates high-performance, low-profile, lightweight, and low-cost antennas to meet future demands. For applications employing the gigahertz (GHz) spectral band, a high-gain, innovative microstrip patch antenna design is suggested at the working frequency of 10 GHz. This investigation provides a perspective on how composite substrates can represent a communication revolution by providing an alternative to substrates that are readily accessible commercially in situations when the material qualities are insufficient. Gain and reflection coefficients (S11) findings are compared for both composite and photonic crystal antennas. The photonic crystal composite antenna records the highest gain of 13.89 dB with the coverage of C-band, X-band, and Ku-band, whereas the composite antenna reaches the best gain of 10 dB with the coverage of C-band and X-band. image
引用
收藏
页数:8
相关论文
共 50 条
  • [21] Dual Band Multilayer E-Shape Microstrip Patch Antenna for C-Band and X- Band
    Deb, Partha Kumar
    Moyra, Tamasi
    Bhowmik, Priyansha
    2ND INTERNATIONAL CONFERENCE ON SIGNAL PROCESSING AND INTEGRATED NETWORKS (SPIN) 2015, 2015, : 30 - 34
  • [22] DESIGN of FREQUENCY RECONFIGURABLE MICROSTRIP PATCH ANTENNA for S-BAND and C-BAND APPLICATIONS
    Sharma, Babu Lal
    Parmar, Girish
    Kumar, Mithilesh
    2015 4TH INTERNATIONAL CONFERENCE ON RELIABILITY, INFOCOM TECHNOLOGIES AND OPTIMIZATION (ICRITO) (TRENDS AND FUTURE DIRECTIONS), 2015,
  • [23] A Broadband Circularly Polarized Microstrip Patch Antenna for X-Band Applications
    Bharathi, S. Divya
    Natarajamani, S.
    2018 INTERNATIONAL CONFERENCE ON WIRELESS COMMUNICATIONS, SIGNAL PROCESSING AND NETWORKING (WISPNET), 2018,
  • [24] Design and Simulation of Microstrip Patch Antenna Array for X-Band Applications
    Najeeb, Rozh
    Hassan, Diyari
    Najeeb, Dana
    Ademgil, Huseyin
    2016 13TH HONET-ICT INTERNATIONAL SYMPOSIUM ON SMART MICROGRIDS FOR SUSTAINABLE ENERGY SOURCES ENABLED BY PHOTONICS AND IOT SENSORS, 2016, : 79 - 83
  • [25] Comparison of Different Shapes in Microstrip Patch Antenna for X-band Applications
    Kiruthika, R.
    Shanmuganantham, T.
    IEEE INTERNATIONAL CONFERENCE ON EMERGING TECHNOLOGICAL TRENDS IN COMPUTING, COMMUNICATIONS AND ELECTRICAL ENGINEERING (ICETT), 2016,
  • [26] A compact subdivided square microstrip patch antenna for c-band applications
    Park, JY
    Caloz, C
    Qian, YX
    Itoh, T
    APMC 2001: ASIA-PACIFIC MICROWAVE CONFERENCE, VOLS 1-3, PROCEEDINGS, 2001, : 1143 - 1146
  • [27] Compact Microstrip Patch Antenna with Parasitic Loading for X & Ku Band Applications
    Barthwal, Mohit
    Zaidi, Sohaib Abbas
    Tripathy, M. R.
    Pattnaik, S. S.
    PIERS 2014 GUANGZHOU: PROGRESS IN ELECTROMAGNETICS RESEARCH SYMPOSIUM, 2014, : 733 - 735
  • [28] Dual Band Slot Antenna with F-Shaped Slits for C-band and X-band Applications
    Tubbal, Faisel
    Raad, Raad
    Theoharis, Panagiotis Ioannis
    Iranmanesh, Saeid
    Abulgase, Suhila
    Khan, Muhmmad Usman Ali
    2019 13TH INTERNATIONAL CONFERENCE ON SIGNAL PROCESSING AND COMMUNICATION SYSTEMS (ICSPCS), 2019,
  • [29] A Novel Dual Band Microstrip Patch Antenna for Ku / Ka Band Wireless Applications
    Vignesh, S. J.
    Pandhare, Rashmi A.
    Yadav, Dinesh
    2020 IEEE INTERNATIONAL RF AND MICROWAVE CONFERENCE (RFM), 2020,
  • [30] High Gain Planar Microstrip Antenna at X-Band
    Chakrabarti, Satyajit
    2007 IEEE APPLIED ELECTROMAGNETICS CONFERENCE, 2007, : 13 - 16