Enhancing Downlink QoS and Energy Efficiency Through a User-Centric Stienen Cell Architecture for mmWave Networks
Author | Hashmi, Umair Sajid |
Author | Zaidi, Syed Ali Raza |
Author | Imran, Ali |
Author | Abu-Dayya, Adnan |
Available date | 2024-10-20T10:43:20Z |
Publication Date | 2020 |
Publication Name | IEEE Transactions on Green Communications and Networking |
Resource | Scopus |
ISSN | 24732400 |
Abstract | This paper presents an analytical framework for performance characterization of a novel Stienen cell based user-centric architecture operating in millimeter wave spectrum. In the proposed architecture, at most one remote radio head (RRH) is activated within non overlapping user equipment (UE)-centric Stienen cells (S-cells) generated within the Voronoi region around each UE. Under the presented framework, we derive analytical models for the three key performance indicators (KPIs): i) SINR distribution (used as an indicator for quality of service (QoS)), ii) area spectral efficiency (ASE), and iii) energy efficiency (EE) as a function of the three major design parameters in the proposed architecture, namely UE service probability, S-cell radius coefficient and RRH deployment density. The analysis is validated through extensive Monte Carlo simulations. The simulation results provide practical design insights into the interplay among the three design parameters, tradeoffs among the three KPIs, sensitivity of each KPI to the design parameters as well as optimal range of the design parameters. Results show that compared to current non user-centric architectures, the proposed architecture not only offers significant SINR gains, but also the flexibility to meet diverse UE specific QoS requirements and trade between EE and ASE by dynamically orchestrating the design parameters. |
Sponsor | Manuscript received March 10, 2019; revised September 17, 2019 and December 12, 2019; accepted December 28, 2019. Date of publication January 20, 2020; date of current version May 19, 2020. This work was supported in part by the National Science Foundation under Grant 1718956, Grant 1730650, and Grant 1923669; and in part by the Qatar National Research Fund under Grant NPRP12-S 0311-190302. The associate editor coordinating the review of this article and approving it for publication was M. C. Gursoy. (Corresponding author: Umair Sajid Hashmi.) Umair Sajid Hashmi is with the School of Electrical Engineering and Computer Science, National University of Sciences and Technology, Islamabad 44000, Pakistan (e-mail: umair.hashmi@seecs.edu.pk). |
Language | en |
Publisher | Institute of Electrical and Electronics Engineers Inc. |
Subject | area spectral efficiency energy efficiency Stienen model User-centric architectures |
Type | Article |
Pagination | 387-403 |
Issue Number | 2 |
Volume Number | 4 |
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