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Survey on Dielectric Resonator and Substrate Integrated Waveguide-Based 5G MIMO Antenna with Different Mutual Coupling Reduction Techniques

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Multiscale Modelling of Advanced Materials

Part of the book series: Materials Horizons: From Nature to Nanomaterials ((MHFNN))

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Abstract

Tremendous growth in the field of mobile communication and wireless communication enforces antenna engineers to meet the current technological advancement. It is sure that the implementation of unlicensed 5G spectrum at 60 GHz will be a compulsion at the end of 2020.As the mobile and communication users are increasing very fast to avail the facility of a communication network, requirement of high spectral efficiency and ultra-high data rate must be the motivated area of research. So multiple input multiple output (MIMO) antenna can be a suggestive approach at 60 GHz spectrum.Mutual coupling between the ports of the MIMO antenna is again another challenge which affects the radiation pattern of the antenna. So care must be taken to reduce the mutual coupling between the elements of the antenna.Use of 60 GHz frequency forces the antenna engineers for the use of dielectric resonator antenna instead of microstrip patch antenna.Substrate integrated waveguide (SIW) feed antenna provides high gain and high bandwidth compared to the other antenna.This paper gives systematical studies of SIW antenna, dielectric resonator antenna, 5G MIMO antenna with all the isolation improvement techniques to meet the current requirement.

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References

  1. Ancan G, Bobrovs V, Ancans A, Kalibatiene D (2017) Spectrum considerations for 5G mobile communication systems.‖ Procedia Comput Sci 104:509–516

    Google Scholar 

  2. Shimodaira H, Tran GK, Sakaguchi K, Araki K (2015) Investigation on millimeter-wave spectrum for 5G. In: 2015 IEEE conference on standards for communications and networking (CSCN), pp 143–148

    Google Scholar 

  3. Mitra RN, Agrawal DP (2015) 5G mobile technology: a survey. ICT Express 1:132–137

    Article  Google Scholar 

  4. Shimodaira H, Tran GK, Sakaguchi K, Araki K(2015) Investigation on millimeter-wave spectrum for 5G. In: 2015 IEEE conference on standards for communications and networking (CSCN), pp 143–148

    Google Scholar 

  5. Wang T, Li G, Ding J, Miao Q, Li J, Wang Y (2015) 5G spectrum: is China ready? IEEE Commun Mag 53(7):58–65

    Article  CAS  Google Scholar 

  6. Wireless Gigabit Alliance, Beaverton. www.wirelessgigabitalliance.org

  7. Dadgarpour Abdolmehdi, Zarghooni Behnam, Virdee BS, Denidni Tayeb, Kishk Ahmed (2016) Mutual coupling reduction in dielectric resonator antennas using metasurface shield for 60 GHz MIMO systems. IEEE Antennas Wirel Propag Lett 16:1–1. https://doi.org/10.1109/LAWP.2016.2585127

    Article  Google Scholar 

  8. Karimian R, Kesavan A, Nedil M, Denidni TA (2016) Low power mutual coupling 60 Ghz MIMO antenna system with frequency selective surface wall. IEEE Antennas Wirel Propag Lett. https://doi.org/10.1109/lawp.2016.2578179

    Article  Google Scholar 

  9. Farahani M et al (2017) Mutual coupling reduction in millimeter-wave MIMO antenna array using a metamaterial polarization-rotator wall. IEEE Antennas Wirel Propag Lett. https://doi.org/10.1109/lawp.2017.2717404

    Article  Google Scholar 

  10. Al-Hasan MJ, Denidni TA, Sebak AR (2014) Millimeter-wave compact EBG structure for mutual coupling reduction applications. IEEE Trans Antennas Propag. https://doi.org/10.1109/tap.2014.2381229

    Article  Google Scholar 

  11. Zhu Q, Ng KB, Chan CH, Luk K-M (2017) Surface—integrated-waveguide—fed array antenna covering 57–71 Ghz band for 5G application. IEEE Trans Antennas Propag. https://doi.org/10.1109/tap.2017.2723080

    Article  Google Scholar 

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Correspondence to Satyanarayan Rath .

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Rath, S., Sheeja, K.L. (2020). Survey on Dielectric Resonator and Substrate Integrated Waveguide-Based 5G MIMO Antenna with Different Mutual Coupling Reduction Techniques. In: Kumari, R., Choudhury, B. (eds) Multiscale Modelling of Advanced Materials. Materials Horizons: From Nature to Nanomaterials. Springer, Singapore. https://doi.org/10.1007/978-981-15-2267-3_11

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