The development of 5G technology has opened up new investigation to embrace the terrestrial network with non-terrestrial network for forthcoming 6G communication. In this study the channel capacity has been analyzed for Terrestrial Network at 6 GHz. Densification of network benefits in terms of capacity. The work has been carried out for 10, 50 and 200 m inter-site distance. For non-terrestrial network capacity analysis has been done at 28, 70 and 150 GHz for the altitude of Low Earth Orbit (LEO), Medium Earth Orbit (MEO) and Geostationary Earth Orbit (GEO). \({10}^{0}\) , \({50}^{0}\) and \({90}^{0}\) elevation angles are taken and rural and urban scenario have been selected to show the effect of blockage. High gain antenna of 50 dB has been selected to mitigate huge path loss due to millimetre Wave. The feasibility of Satellite Communication at millimeter Wave frequency (mmWave) has been studied in this work.

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Capacity Enhancement for 6G Communication with Densification of Terrestrial Network and Integration with Non-terrestrial Network

  • Pia Sarkar,
  • Arijit Saha,
  • Amit Banerjee,
  • Vedatrayee Chakraborty

摘要

The development of 5G technology has opened up new investigation to embrace the terrestrial network with non-terrestrial network for forthcoming 6G communication. In this study the channel capacity has been analyzed for Terrestrial Network at 6 GHz. Densification of network benefits in terms of capacity. The work has been carried out for 10, 50 and 200 m inter-site distance. For non-terrestrial network capacity analysis has been done at 28, 70 and 150 GHz for the altitude of Low Earth Orbit (LEO), Medium Earth Orbit (MEO) and Geostationary Earth Orbit (GEO). \({10}^{0}\) , \({50}^{0}\) and \({90}^{0}\) elevation angles are taken and rural and urban scenario have been selected to show the effect of blockage. High gain antenna of 50 dB has been selected to mitigate huge path loss due to millimetre Wave. The feasibility of Satellite Communication at millimeter Wave frequency (mmWave) has been studied in this work.