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Interference cancelation for high-density fifth-generation relaying network using stochastic geometrical approach

Author

Listed:
  • MHD Nour Hindia
  • Faizan Qamar
  • Talib Abbas
  • Kaharudin Dimyati
  • Mohamad Sofian Abu Talip
  • Iraj Sadegh Amiri

Abstract

In order to resolve the issue of coverage limitation for the future fifth-generation network, deploying a relay node within a cell is one of the most capable and cost-effective solution, which not only enhances the coverage but also improves the spectral efficiency. However, this solution leads to the undesired interferences from nearby base station and relay nodes that affects user’s signal-to-interference-plus-noise ratio and can cause the ambiguous received signal at the user end. In this article, we have analyzed a relay-based interference-limited network at millimeter wave frequency and proposed a Poisson point process–based model using a stochastic geometrical approach. The results for the proposed Poisson point process model have been evaluated in terms of success probability, network ergodic capacity, and outage probability, compared with the ideal grid model and conventional multiple-antenna ultra-dense network model. The results proved that the success probability and ergodic capacity for the proposed model are 3.5% and 2.3% higher as compared to the most commonly used model for the high-density network, respectively. Furthermore, the results have been analyzed at different multiple-input-multiple-output antenna configuration, which validates the model in the improvement of overall network performance even for higher number of antennas.

Suggested Citation

  • MHD Nour Hindia & Faizan Qamar & Talib Abbas & Kaharudin Dimyati & Mohamad Sofian Abu Talip & Iraj Sadegh Amiri, 2019. "Interference cancelation for high-density fifth-generation relaying network using stochastic geometrical approach," International Journal of Distributed Sensor Networks, , vol. 15(7), pages 15501477198, July.
  • Handle: RePEc:sae:intdis:v:15:y:2019:i:7:p:1550147719855879
    DOI: 10.1177/1550147719855879
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    References listed on IDEAS

    as
    1. MHD Nour Hindia & Faizan Qamar & Mohammad B. Majed & Tharek Abd Rahman & Iraj S. Amiri, 2019. "Enabling remote-control for the power sub-stations over LTE-A networks," Telecommunication Systems: Modelling, Analysis, Design and Management, Springer, vol. 70(1), pages 37-53, January.
    2. Unknown, 2005. "Forward," 2005 Conference: Slovenia in the EU - Challenges for Agriculture, Food Science and Rural Affairs, November 10-11, 2005, Moravske Toplice, Slovenia 183804, Slovenian Association of Agricultural Economists (DAES).
    3. A M Al-Samman & T A Rahman & M H Azmi & M N Hindia & I Khan & E Hanafi, 2016. "Statistical Modelling and Characterization of Experimental mm-Wave Indoor Channels for Future 5G Wireless Communication Networks," PLOS ONE, Public Library of Science, vol. 11(9), pages 1-29, September.
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