Design of array antenna for wireless communication

  • Authors

    • Sarmistha Satrusallya
    • Mihir Narayan Mohanty
    2018-06-08
    https://doi.org/10.14419/ijet.v7i2.33.15538
  • Array Antenna, Patch, Optimization, Bandwidth
  • As antenna plays a major role in communication, it paves a way towards wireless communication. Use of antenna array in wireless commu-nication for different application is the focused area of research in current years. In this paper, an attempt is taken to design an antenna array with rectangular parasitic patches around the modified rectangular patch at the centre. The gap is maintained within the central patch. Further to achieve better performance, optimization of the parasitic elements is considered. Using popular genetic algorithm the patch dimensions are optimized. The performance in terms of bandwidth, gain and return loss found better than the un optimized design. The result shows the efficiency and observed.

     

     

  • References

    1. [1] Satrusallya, S., & Mohanty, M. N. (2017, December). Design of an array antenna for 5G wireless network with enhanced bandwidth. In Infocom Technologies and Unmanned Systems (Trends and Future Directions) (ICTUS), 2017 International Conference on (pp. 1-5). IEEE.

      [2] Das, A., Mohanty, M. N., & Mishra, L. P. (2015). EA Based Optimized T-Slot Patch Antenna for Bandwidth Improvement. IJET (Engineering Journals), 7(4), 1357-1360.

      [3] Ray, K. P., Sevani, V., & Deshmukh, A. A. (2007). Compact gap-coupled microstrip antennas for broadband and dual frequency operations. International journal of microwave and optical Technology, 2(2), 1-93.

      [4] Sharma, S., Bhushan, B., Gupta, S., & Kaur, P. (2013). Performance comparison of micro-strip antennas with different shape of the patch. International Journal of u-and e-Service, Science and Technology, 6(3), 13-22.

      [5] Wasiq, S., Gupta, S., Chandra, V. K., & Varshney, V. A Review on Different Shapes of Patch Antennas.International Journal of Scientific Research and Management Studies, pp. 59-65.

      [6] Rochani, B., & Raj, R. K. (2014). Design of broadband microstrip patch antenna with parasitic elements. International Journal of Advanced Research in Electrical, Electronics and Instrumentation Engineering, 3(6).

      [7] Nkordeh, N., Idachaba, F., & Oni, O. (2015). Microstrip patch antenna: comparing performance of a rectangular and a circular patch at LTE bluetooth and GSM frequencies. In Proceedings of the World Congress on Engineering (Vol. 2015, pp. 3-6).

      [8] Reddy, M. H., Joany, R. M., Reddy, M. J., Sugadev, M., & Logashanmugam, E. (2017, August). Bandwidth enhancement of microstrip patch antenna using parasitic patch. In Smart Technologies and Management for Computing, Communication, Controls, Energy and Materials (ICSTM), 2017 IEEE International Conference on (pp. 295-298). IEEE.

      [9] Dahlan, A. M. M., & Kamarudin, M. R. (2009, December). Shorted patch antenna with parasitic elements. In Microwave Conference, 2009. APMC 2009. Asia Pacific (pp. 2653-2655). IEEE.

      [10] Parmar, P. B., Makwana, B. J., & Jajal, M. A. (2012, May). Bandwidth enhancement of microstrip patch antenna using parasitic patch configuration. In Communication Systems and Network Technologies (CSNT), 2012 International Conference on (pp. 53-57). IEEE.

      [11] Errifi, H., Baghdad, A., & Badri, A. (2014). Design and optimization of aperture coupled microstrip patch antenna using genetic algorithm. Int J Innovative Res Sci, 3(5), 12687-12694.

      [12] Mohanty, M. N., Routray, A., & Kabisatpathy, P. (2010). Optimisation of features using evolutionary algorithm for EEG signal classification. International Journal of Computational Vision and Robotics, 1(3), 297-310.

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  • How to Cite

    Satrusallya, S., & Narayan Mohanty, M. (2018). Design of array antenna for wireless communication. International Journal of Engineering & Technology, 7(2.33), 942-945. https://doi.org/10.14419/ijet.v7i2.33.15538