Modeling and Performance of Uplink Cache-Enabled Massive MIMO Heterogeneous Networks

A significant burden on wireless networks is brought by the uploading of user-generated contents to the Internet by means of applications such as the social media. To cope with this mobile data tsunami, we develop a novel MIMO network architecture with randomly located base stations (BSs) a large number of antennas employing cache-enabled uplink transmission. In particular, we formulate a scenario, where the users upload their content to their strongest base stations (BSs), which are Poisson point process (PPP) distributed. In addition, the BSs, exploiting the benefits of massive MIMO, upload their contents to the core network by means of a finite-rate backhaul. After proposing the caching policies, where we propose the modified von Mises distribution as the popularity distribution function, we derive the outage probability and the average delivery rate by taking advantage of tools from the deterministic equivalent (DE) and stochastic geometry analyses. Numerical results investigate the realistic performance gains of the proposed heterogeneous cache-enabled uplink on the network in terms of cardinal operating parameters. For example, insights regarding the BSs storage size are exposed. Moreover, the impacts of the key parameters such the file popularity distribution, and the target bitrate are investigated. Specifically, the outage probability decreases if the storage size is increased, while the average delivery rate increases. In addition, the concentration parameter, defining the number of files stored at the intermediate nodes (popularity), affects directly the proposed metrics. A higher target rate results in higher outage because fewer users obey this constraint. Also, we demonstrate that a denser network decreases the outage and increases the delivery rate. Hence, the introduction of caching at the uplink of the system design ameliorates the network performance.

READ FULL TEXT

page 5

page 6

page 7

page 8

page 9

page 10

page 12

page 13

research
02/25/2020

Enhancing Physical Layer Security of Random Caching in Large-Scale Multi-Antenna Heterogeneous Wireless Networks

In this paper, we propose a novel secure random caching scheme for large...
research
07/29/2020

Cache-enabled HetNets with Limited Backhaul: A Stochastic Geometry Model

With the rapid explosion of data volume from mobile networks, edge cachi...
research
04/10/2022

Cache-Aided Massive MIMO with Linear Precoding in Multi-cell Systems

In this paper, we propose a novel joint caching and massive multiple-inp...
research
03/27/2020

Distributed Caching for Data Dissemination in the Downlink of Heterogeneous Networks

Heterogeneous cellular networks (HCN) with embedded small cells are cons...
research
01/18/2019

Outage Analysis of Heterogeneous mmWave Cellular Networks Employing JSDM

In this paper, the outage performance of a two-tier heterogeneous mmWave...
research
01/26/2018

Modeling and Analysis of MmWave Communications in Cache-enabled HetNets

In this paper, we consider a novel cache-enabled heterogeneous network (...
research
03/28/2019

Anywhere Decoding: Low-Overhead Uplink Interference Management for Wireless Networks

Inter-cell interference (ICI) is one of the major performance-limiting f...

Please sign up or login with your details

Forgot password? Click here to reset