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Open AccessJournal ArticleDOI

Modeling and Analysis of D2D Millimeter-Wave Networks With Poisson Cluster Processes

TLDR
Three user association strategies are introduced and it is shown that: 1) the coverage probability is mainly affected by the intra-cluster interference with LOS links; 2) there exists an optimum number of simultaneously active D2D-Txs in each cluster for maximizing ASE; and 3) the closest LOS model outperforms the other two scenarios but at the cost of extra system overhead.
Abstract
This paper investigates the performance of millimeter wave (mmWave) communications in clustered device-to-device (D2D) networks. The locations of D2D transceivers are modeled as a Poisson Cluster Process. In each cluster, devices are equipped with multiple antennas, and the active D2D transmitter (D2D-Tx) utilizes mmWave to serve one of the proximate D2D receivers. Specifically, we introduce three user association strategies: 1) uniformly distributed D2D-Tx model; 2) nearest D2D-Tx model; and 3) closest line-of-site (LOS) D2D-Tx model. To characterize the performance of the considered scenarios, we derive new analytical expressions for the coverage probability and area spectral efficiency (ASE). Additionally, in order to efficiently illustrating the general trends of our system, a closed-form lower bound for the special case interfered by intra-cluster LOS links is derived. We provide Monte Carlo simulations to corroborate the theoretical results and show that: 1) the coverage probability is mainly affected by the intra-cluster interference with LOS links; 2) there exists an optimum number of simultaneously active D2D-Txs in each cluster for maximizing ASE; and 3) the closest LOS model outperforms the other two scenarios but at the cost of extra system overhead.

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Citations
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Journal ArticleDOI

Reconfigurable Intelligent Surfaces: Principles and Opportunities

TL;DR: A comprehensive overview of the state-of-the-art on RISs, with focus on their operating principles, performance evaluation, beamforming design and resource management, applications of machine learning to RIS-enhanced wireless networks, as well as the integration of RISs with other emerging technologies.
Posted Content

Reconfigurable Intelligent Surfaces: Principles and Opportunities

TL;DR: A comprehensive overview of the state-of-the-art on RISs, with focus on their operating principles, performance evaluation, beamforming design and resource management, applications of machine learning to RIS-enhanced wireless networks, as well as the integration of RISs with other emerging technologies is provided in this article.
Journal ArticleDOI

A Unified Spatial Framework for UAV-Aided MmWave Networks

TL;DR: In this article, the locations of transceivers in downlink and uplink are modeled through the Poisson point processes and Poisson cluster processes, respectively, and several closed-form expressions for the coverage probability in the uplink and downlink, are derived.
Journal ArticleDOI

Coverage Analysis for Energy-Harvesting UAV-Assisted mmWave Cellular Networks

TL;DR: The downlink simultaneous wireless information and power transfer (SWIPT) and uplink information transmission in unmanned aerial vehicle-assisted millimeter wave (mmWave) cellular networks, in which the user equipment (UE) locations are modeled using Poisson cluster processes, is considered.
Journal ArticleDOI

Modeling and Analysis of MmWave V2X Networks With Vehicular Platoon Systems

TL;DR: An effective spatial framework for mmWave vehicle-to-everything (V2X) networks with VPSs is proposed by utilizing stochastic geometry approaches and the numerical results illustrate that platoons outperform individual vehicles in terms of road spectral efficiency and the considered system is LOS interference-limited.
References
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Millimeter Wave Mobile Communications for 5G Cellular: It Will Work!

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A Tractable Approach to Coverage and Rate in Cellular Networks

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An introduction to millimeter-wave mobile broadband systems

TL;DR: This article introduces a millimeter-wave mobile broadband (MMB) system as a candidate next generation mobile communication system and demonstrates the feasibility for MMB to achieve gigabit-per-second data rates at a distance up to 1 km in an urban mobile environment.
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Stochastic Geometry for Wireless Networks

TL;DR: This rigorous introduction to stochastic geometry will enable you to obtain powerful, general estimates and bounds of wireless network performance and make good design choices for future wireless architectures and protocols that efficiently manage interference effects.
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