On the Performance of Practical Ultra-Dense Networks: The Major and Minor Factors
arXiv:1701.07964 · doi:10.23919/WIOPT.2017.7959926
Abstract
In this paper, we conduct performance evaluation for Ultra-Dense Networks (UDNs), and identify which modelling factors play major roles and minor roles. From our study, we draw the following conclusions. First, there are 3 factors/models that have a major impact on the performance of UDNs, and they should be considered when performing theoretical analyses: i) a multi-piece path loss model with line-of-sight (LoS) and non-lineof- sight (NLoS) transmissions; ii) a non-zero antenna height difference between base stations (BSs) and user equipments (UEs); iii) a finite BS/UE density. Second, there are 4 factors/models that have a minor impact on the performance of UDNs, i.e., changing the results quantitatively but not qualitatively, and thus their incorporation into theoretical analyses is less urgent: i) a general multi-path fading model based on Rician fading; ii) a correlated shadow fading model; iii) a BS density dependent transmission power; iv) a deterministic BS/user density. Finally, there are 5 factors/models for future study: i) a BS vertical antenna pattern; ii) multi-antenna and/or multi-BS joint transmissions; iii) a proportional fair BS scheduler; iv) a non-uniform distribution of BSs; v) a dynamic time division duplex (TDD) or full duplex (FD) network. Our conclusions can guide researchers to downselect the assumptions in their theoretical analyses, so as to avoid unnecessarily complicated results, while still capturing the fundamentals of UDNs in a meaningful way.
Final IEEE version: http://ieeexplore.ieee.org/document/7959926/. arXiv admin note: text overlap with arXiv:1609.07710
References in corpus (9)
- Towards 1 Gbps/UE in Cellular Systems: Understanding Ultra-Dense Small Cell Deployments
- D2D Enhanced Heterogeneous Cellular Networks with Dynamic TDD
- Study on the Idle Mode Capability with LoS and NLoS Transmissions
- Sequential and Incremental Precoder Design for Joint Transmission Network MIMO Systems with Imperfect Backhaul
- Leakage-Based Robust Beamforming for Multi-Antenna Broadcast System with Per-Antenna Power Constraints and Quantized CDI
- An Analytical Framework for Modeling a Spatially Repulsive Cellular Network
- Uplink Performance Analysis of Dense Cellular Networks with LoS and NLoS Transmissions
- What Is the True Value of Dynamic TDD: A MAC Layer Perspective
- Nearest Neighbour Distance Distribution in Hard-Core Point Processes
Cited by in corpus (6)
- Joint User Association and Power Allocation in Heterogeneous Ultra Dense Network via Semi-Supervised Representation Learning
- Ultra-Dense Networks: Is There a Limit to Spatial Spectrum Reuse?
- Survey on UAV Cellular Communications: Practical Aspects, Standardization Advancements, Regulation, and Security Challenges
- Stochastic Geometry Analysis of Ultra-Dense Networks: Impact of Antenna Height and Performance Limits
- Optimum Interference Management in Underlay Inband D2D-Enhanced Cellular Networks
- What is the Optimal Network Deployment for a Fixed Density of Antennas?