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Design of a New Wideband Microstrip Filtering Antenna Using PCML-SIR Technique

    Authors

    • Mohammed Alkhafaji 1
    • Abdul Nasser A. Abbood 2

    1 Southern Technical University (STU)

    2 Electronic Techniques Department, Basra Technical Institute, Southern Technical University (STU), Basra Iraq.

,

Document Type : Research Article

10.63463/kjes1001
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Abstract

This article proposes a new design structure of a wideband Microstrip filtering antenna. The design structure of Microstrip filtering antenna is based on the integration of Parallel Coupled Microstrip Line Stepped Impedance Resonator (PCML - SIR) filter with the Monopole patch antenna. The proposed filtering antenna is suitable for high-speed data rate transmission applications, which has a center frequency . The planned structure has a Fractional Bandwidth (FBW) of about 20 %, a return loss (  and a gain over the passband frequency equals to ( 2.88 dB). The proposed microstrip filtering antenna has a good radiation efficiency of about (71.67 %). This design has an incomplete ground plane and a reversed L-shaped slit loaded. The proposed filtering antenna design was simulated using Computer Simulation Technology (CST) Studio Suite software. The design shows a good agreement matching between the PCML-SIR filter and the monopole patch antenna. The simulation design results showed a low loss in the passband and high suppression of the spurious responses in the stopband. The main goal of the PCML-SIR design is to use for high-speed data transmission, which needs to spread frequency spectrum.

Keywords

  • filtering antenna
  • a Monopole patch antenna
  • PCML – SIR filter
  • WLAN applications
  • Computer Simulation Technology (CST)
  • spurious responses
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References
[1]       WJ Wu, QF Liu, Q Zhang, and JY Deng, "Co-Design of a Compact Dual-Band Filter-Antenna for WLAN Application," Progress In Electromagnetics Research Letters, vol. 40, pp. 129-139, 2013.
[2]       G Mansour, MJ Lancaster, PS Hall, P Gardner, and E Nugoolcharoenlap, "Design of filtering microstrip antenna using filter synthesis approach," Progress In Electromagnetics Research, vol. 145, pp. 59-67, 2014.
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 [6]      J Marimuthu, AM Abbosh, and B. Henin, "Planar microstrip bandpass filter with wide dual bands using parallel-coupled lines and stepped impedance resonators," Progress In Electromagnetics Research C, vol. 35, pp. 49-61, 2013.
 [7]      JK Xiao and HF Huang, "New dual-band bandpass filter with compact SIR structure," Progress In Electromagnetics Research Letters, vol. 18, pp. 125-134, 2010.
 [8]      S Kumar, N Beniwal, and D Srivastava, "Bandwidth Enhancement by slot-loaded Monopole patch antenna for GPS/WLAN/WiMAX Applications." International Journal of Advanced Research in Computer and Communication Engineering, Vol. 3, Issue 1, January 2014.
 [9]      SS Mishra, MK Singh, and D Dhubkariya, "Performance Analysis and Bandwidth Enhancement of Rectangular Microstrip Patch [MSP] Antenna using Compact Double „L‟ Slotted Technique for Broadband Applications." International Journal of Enhanced Research in Science Technology & Engineering, ISSN: 2319-7463, Vol. 3 Issue 1, pp. 418 - 423, January-2014.
 [10]    S Kumar and H Gupta, "Design and study of compact and wideband microstrip u-slot Monopole patch antenna for Wi-Max application," IOSR-JECE, ISSN, pp. 2278-2834, 2013.
 [11]    JT Kuo, CY Fan, and SC Tang, "Dual-wideband bandpass filters with extended stopband based on coupled-line and coupled three-line resonators," PROGRESS IN ELECTROMAGNETICS RESEARCH-PIER, vol. 124, pp. 1-15, 2012.
 [12]  SA Shetawy, EA Abdallah, D Abdel-Aziz. " Slotted Ground Plane of Rectangular Patch Microstrip Antenna with Enhanced Bandwidth and Size Reduction " 12th WSEAS International Conference on COMMUNICATIONS, pp. 286-290, 2008.
 [13]    Chen, L, & Luo, YL "Compact filtering antenna using CRLH resonator and defected ground structure"Electronics Letters, 50(21), pp.1496-1498, 2014.
 [14]    Yang, CS, Chen, PH, Lu, JH, & Jou, CFA "three-order equal-ripple band-pass filtering antenna design using capacitive-gap coupled asymmetrical-CPW resonator" Antenna Technology, International Workshop on Small Antennas, Novel EM Structures and Materials, and Applications (iWAT) 2014
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Kerbala Journal for Engineering Sciences
Volume 1, Issue 1
September 2021
Pages 1-15
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How to cite
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  • Article View: 2,916
  • PDF Download: 522

APA

Alkhafaji, M., & A. Abbood, A. N. (2021). Design of a New Wideband Microstrip Filtering Antenna Using PCML-SIR Technique. Kerbala Journal for Engineering Sciences, 1(1), 1-15. doi: 10.63463/kjes1001

MLA

Mohammed Alkhafaji; Abdul Nasser A. Abbood. "Design of a New Wideband Microstrip Filtering Antenna Using PCML-SIR Technique". Kerbala Journal for Engineering Sciences, 1, 1, 2021, 1-15. doi: 10.63463/kjes1001

HARVARD

Alkhafaji, M., A. Abbood, A. N. (2021). 'Design of a New Wideband Microstrip Filtering Antenna Using PCML-SIR Technique', Kerbala Journal for Engineering Sciences, 1(1), pp. 1-15. doi: 10.63463/kjes1001

VANCOUVER

Alkhafaji, M., A. Abbood, A. N. Design of a New Wideband Microstrip Filtering Antenna Using PCML-SIR Technique. Kerbala Journal for Engineering Sciences, 2021; 1(1): 1-15. doi: 10.63463/kjes1001

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