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1705194 Vol 7 · Issue 5 Download Paper

Design and Improvement of Microstrip Patch Antenna Parameters Using Deflected Ground Structure

Sunusi Sulaiman Dauda Musefiu Aderinola Isiaka Shuaibu

Subject area: Science,Engineering and Technology  ·  Area of research: Telecommunications

Abstract

A microstrip patch antenna is a type of antenna that operates at microwave frequencies and commonly used in wireless communication system. Despite the widespread utilization of microstrip patch antenna in diverse wireless communication systems, the demand for an efficient antenna that can transmit signals with minimal return loss, high data rate and broad bandwidth remain a critical requirement. In this study 2.4GHz Microstrip patch antenna with length of 59mm, width of 93mm and height of 1.2mm. the simulation result obtained were compared to default microstrip patch antenna using impedance, return loss, voltage standing wave ratio(VSWR), azimuth and elevation peak dataset. The Proposed microstrip patch antenna (PMPA) shows better performance with impedance resistance and reactance of 43? and 50?, return loss of 3.1dB, VSWR of 3.1dB, peak dataset of azimuth of 1.9793dB and peak dataset elevation of -7.706dB compared to default microstrip patch antenna (DMPA) with 42? and 72? for impedance resistance and reactance, return loss 3.2 x 10^6 dB, VSWR of 0dB, peak dataset of azimuth 1.9736dB and peak dataset of -7.108dB.

References

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[2] Alok Tiwari, Brijesah pandey, Abita V.K., Raghvendra Mishra, Amit Vasudeo Rane, and Jaya Suryawanshi. Simulation of Ultra-Wideband Co-planar Boat Microstrip Patch antenna With IE3D software for wireless Communication, International Scientific Organization, 2015

[3] Chantali Mukta, Mahfujur Rahman, Abu Zafor md. Touhidul Islam. Design of Compact Circular Microstrip Patch Antenna for WLAN Applications. International Journal on Adhoc Networking System, Vol. 11, No3. 2021

[4] Ahmed Jamal Abdullah Al-Gburi1, Imran Mohd Ibrahim1, Zahriladha Zakaria1, Elzameera Bt Abdul Halim. Microstrip Patch Antenna Arrays Design For 5G Wireless Backhaul Application At 3.5 GHz. 2022.

[5] Soumen Barua1, Abu Zafar Md. Imran1, Md. Emdadul Hoque Bhuiyan1, Subrata Barua, Syed Zahidur Rashid, Abdul Gafur1, Md. Razu Ahmed. Highly efficient microstrip patch antenna for wireless gigabit alliance applications (2022). Indonesian Journal of Electrical Engineering and Computer Science. Vol. 26, No. 3, June 2022, pp. 1451~1459.

[6] Sunil P. Lavadiya, Vishal Sorathiya, Sunny Kanzariya, Bhavik Chavda, Ahmad Naweed, Osama S. Faragallah, Mahmoud M. A. Eid, Ahmed Nabih Zaki Rashed. Low profile multiband microstrip patch antenna with frequency reconfigurable feature using PIN diode for S, C, X, and Ku band applications. Wiley 2022.

[7] M. Kamran Shereen, M.I. Khattak, Jamel Nebhen A review of achieving frequency reconfiguration through switching in microstrip patch antennas for future 5G applications Alexandria Engineering Journal, 2021

[8] Md. Sohel Rana, Md. Mostafizur Rahman Smieee. Design and analysis of microstrip patch antenna for 5G wireless communication systems. Bulletin of Electrical Engineering and Informatics Vol. 11, No. 6, pp. 3329~3337. December 2022

[9] WEI NIE HUAI-ZHI WEN1, KAI-DA XU (Senior Member, IEEE), YU-QUAN LUO6, XIAO-LONG YANG (Member, IEEE), AND MU ZHOU 1 (Senior Member, IEEE). A Compact 4×4 Filtering Microstrip Patch Antenna Array With Dolph-Chebyshev Power Distribution. Antenna and propagation, Open access Journal 2022

[10] Alaa M. Abdulhussein, Ali H. Khidhi and Ahmed A. Naser. 2.4 GHz Microstrip Patch Antenna for S-Band Wireless Communications. Journal of Physics. 2021

How to cite this paper

Sunusi Sulaiman Dauda, Musefiu Aderinola, Isiaka Shuaibu "Design and Improvement of Microstrip Patch Antenna Parameters Using Deflected Ground Structure" Iconic Research And Engineering Journals Volume 7 Issue 5 2023 Page 142-149
Sunusi Sulaiman Dauda, Musefiu Aderinola, Isiaka Shuaibu "Design and Improvement of Microstrip Patch Antenna Parameters Using Deflected Ground Structure" Iconic Research And Engineering Journals, vol. 7, no. 5, Nov. 2023
Sunusi Sulaiman Dauda, Musefiu Aderinola, Isiaka Shuaibu (2023). Design and Improvement of Microstrip Patch Antenna Parameters Using Deflected Ground Structure. Iconic Research And Engineering Journals, 7(5).
Sunusi Sulaiman Dauda, Musefiu Aderinola, Isiaka Shuaibu "Design and Improvement of Microstrip Patch Antenna Parameters Using Deflected Ground Structure" Iconic Research And Engineering Journals, vol. 7, no. 5, Nov. 2023.
@article{1705194,
      author = {Sunusi Sulaiman Dauda, Musefiu Aderinola, Isiaka Shuaibu},
      title = {Design and Improvement of Microstrip Patch Antenna Parameters Using Deflected Ground Structure},
      journal = {Iconic Research And Engineering Journals},
      year = {2023},
      volume = {7},
      number = {5},
      pages = {142-149},
      issn = {2456-8880},
      url = {https://www.irejournals.com/formatedpaper/1705194.pdf},
      abstract = {A microstrip patch antenna is a type of antenna that operates at microwave frequencies and commonly used in wireless communication system. Despite the widespread utilization of microstrip patch antenna in diverse wireless communication systems, the demand for an efficient antenna that can transmit signals with minimal return loss, high data rate and broad bandwidth remain a critical requirement. In this study 2.4GHz Microstrip patch antenna with length of 59mm, width of 93mm and height of 1.2mm. the simulation result obtained were compared to default microstrip patch antenna using impedance, return loss, voltage standing wave ratio(VSWR), azimuth and elevation peak dataset. The Proposed microstrip patch antenna (PMPA) shows better performance with impedance resistance and reactance of 43? and 50?, return loss of 3.1dB, VSWR of 3.1dB, peak dataset of azimuth of 1.9793dB and peak dataset elevation of -7.706dB compared to default microstrip patch antenna (DMPA) with 42? and 72? for impedance resistance and reactance, return loss 3.2 x 10^6 dB, VSWR   of  0dB, peak dataset of azimuth 1.9736dB and  peak dataset of -7.108dB.},
      month = {November},
  }