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1701154 Vol 2 · Issue 10 Download Paper

Dual Band Antenna For Future Applications

Dency Flora G Saranya B Sheela Devi P Sowmiah C R

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

Abstract

This paper presents a design 0f dual-band antenna for future applications. The proposed MIMO antenna consists of array of eight antennas which operates at 2.3- 2.4GHz and 7.2-7.4GHz. The antenna is designed using FR4 substrate with thickness 0.8mm. It has relative permittivity 4.4 and loss tangent 0.02. Then the antenna will be fabricated and tested using spectrum analyzer.

Keywords

antenna, MIMO, antenna parameters, spectrum analyzer

References

[1] Weijun Zhang, Zibin Weng, Lei Wang, Design of a dual band MIMO antenna for 5G Smartphone applications. 2018IEEE.

[2] Yong-Ling Ban, Chuan Li Chow-Yen- Desmond Sim, Gang Wu, Kin-Lu Wong 4G/5G Multiple Antennas for Future Multi- Mode Smartphone Applications. 2016 IEEE Access.

[3] Yusnita Rahayu, Muhammad Rifqy Asrul, Tulus Rahayu, Design MIMO 1×8 Antenna for Future 5G Applications, 2018.

[4] A. A. Asaker, R. S. Ghoname, A. A. Zekry, Design of a Planar MIMO Antenna for LTE- Advanced. International Journal of Computer Applications, April 2015.

[5] Ming-Yang Li, Zi-Qiang Xu, Yong-Ling Ban, Chow-Yen_desmond Sim, Zhe-Feng Yu, Eight-Port Orthogonally dual-polarized MIMO Antennas using loop structures for5G

[6] Smartphone. IET Microwaves Antennas and Propagation- September 2017.

[7] W. Su, Q. Liu, “A New Context Awareness Scheme for Multi-mode Mobile Terminals in Mobile Internet,” Wireless, Mobile and Multimedia Networks (ICWMNN 2010), IET 3rd International Conference on IET, 2010:95- 98.

[8] T. Ohishi, N. Oodachi, S. Sekine, et al., “A method to improve the correlation coefficient and the mutual coupling for diversity antenna,” IEEE Antennas Propag. Soc. Int. Symp. Dig., Washington, DC, USA, 2005, pp. 507-510.

[9] Y. Ding, Z. Du, K. Gong, et al., “A novel dual- band printed diversity antenna for mobile terminals,” IEEE Trans. Antennas Propag., vol. 55, no. 7, pp. 2088–2096, Jul.2007.

[10] A. Chebihi, A. Diallo, and C. Luxey, et al., “User’s head and hand influence on the diversity performance of neutralized two- antenna systems for UMTS handsets,” IEEE Antennas Propag. Soc. Int. Symp. (AP-S 2008), San Diego, CA, 2008, pp.1–4.

How to cite this paper

Dency Flora G , Saranya B, Sheela Devi P, Sowmiah C R "Dual Band Antenna For Future Applications" Iconic Research And Engineering Journals Volume 2 Issue 10 2019 Page 244-247
Dency Flora G , Saranya B, Sheela Devi P, Sowmiah C R "Dual Band Antenna For Future Applications" Iconic Research And Engineering Journals, vol. 2, no. 10, Apr. 2019
Dency Flora G , Saranya B, Sheela Devi P, Sowmiah C R (2019). Dual Band Antenna For Future Applications. Iconic Research And Engineering Journals, 2(10).
Dency Flora G , Saranya B, Sheela Devi P, Sowmiah C R "Dual Band Antenna For Future Applications" Iconic Research And Engineering Journals, vol. 2, no. 10, Apr. 2019.
@article{1701154,
      author = {Dency Flora G , Saranya B, Sheela Devi P, Sowmiah C R},
      title = {Dual Band Antenna For Future Applications},
      journal = {Iconic Research And Engineering Journals},
      year = {2019},
      volume = {2},
      number = {10},
      pages = {244-247},
      issn = {2456-8880},
      url = {https://www.irejournals.com/formatedpaper/1701154.pdf},
      abstract = {This paper presents a design 0f dual-band antenna for future applications. The proposed MIMO antenna consists of array of eight antennas which operates at 2.3- 2.4GHz and 7.2-7.4GHz. The antenna is designed using FR4 substrate with thickness 0.8mm. It has relative permittivity 4.4 and loss tangent 0.02. Then the antenna will be fabricated and tested using spectrum analyzer.},
      keywords = {antenna, MIMO, antenna parameters, spectrum analyzer},
      month = {April},
  }