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Adaptive Multi-state Millimeter Wave Cell Selection Scheme for 5G communication

Attiah, Mothana LMd Isa, Azmi AwangZakaria, ZahriladhaAbdullah, Nor FadzilahIsmail, MahamodNordin, Rosdiadee
International Journal of Electrical and Computer Engineering (IJECE) (Sinta 1)Vol. 0 No. 01 Oktober 2018
DOI10.11591/ijece.v8i5.pp2967-2978

Abstrak

Millimeter wave bands have been introduced as one of the most promising solutions to alleviate the spectrum secrecy in the upcoming future cellular technology (5G) due the enormous amount of raw bandwidth available in these bands. However, the inherent propagation characteristics of mmWave frequencies could impose new challenges i.e. higher path loss, atmospheric absorption, and rain attenuation which in turn increase the outage probability and hence, degrading the overall system performance. Therefore, in this paper, a novel flexible scheme is proposed namely Adaptive Multi-State MmWave Cell Selection (AMSMC-S) through adopting three classes of mmWave base stations, able to operate at various mmWave carrier frequencies (73, 38 and 28 GHz). Two mmWave cellular Grid-Based cell deployment scenarios have been implemented with two inter-site-distances 200 m and 300 m, corresponding to target area of (2.1 km2) and (2.2 km2). The maximum SINR value at the user equipment (UE) is taken in to consideration to enrich the mobile user experience. Numerical results show an improvement of overall system performance, where the outage probability reduced significantly to zero while maintaining an acceptable performance of the 5G systems with approximately more than 50% of the mobile stations with more than 1Gbps data rate.

Kata Kunci

Electrical and Electronics EngineeringTelecommunication5G communicationshybrid mmWave (BS) aproachmmwave frequency bandsmultiple mmwave connectionsoutage probability

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Adaptive Multi-state Millimeter Wave Cell Selection Scheme for 5G communication | International Journal of Electrical and Computer Engineering (IJECE) | Publiora