Power Loading based on Portfolio Theory for Densified Millimeter-Wave Small-Cell Communications

01/31/2019
by   Shuyi Shen, et al.
0

We experimentally demonstrate a novel scheme of power loading based on portfolio theory for millimeter-wave small-cell densification. By exploiting the statistical characteristics of interference, this approach improves the average throughput by 91

READ FULL TEXT

page 1

page 2

page 3

research
04/26/2018

Maximum Throughput Scheduling for Multi-connectivity in Millimeter-Wave Networks

Multi-connectivity is emerging as promising solution to provide reliable...
research
11/19/2018

Initial Cell Search and Selection for Load Balancing and Throughput Optimization in 5G Millimeter Wave Networks

The increasing adoption of the Internet of Things (IoT) requires careful...
research
03/15/2018

Performance and Impairment Modelling for Hardware Components in Millimetre-wave Transceivers

This invited paper details some of the hardware modelling and impairment...
research
04/11/2018

Beamformed Fingerprint Learning for Accurate Millimeter Wave Positioning

With millimeter wave wireless communications, the resulting radiation re...
research
10/21/2017

Performance Analysis of Millimeter-Wave Relaying: Impacts of Beamwidth and Self-Interference

We study the maximum achievable rate of a two-hop amplified-and-forward ...
research
05/20/2017

End-to-end Planning of Fixed Millimeter-Wave Networks

This article discusses a framework to support the design and end-to-end ...
research
11/26/2021

Semi-supervised t-SNE for Millimeter-wave Wireless Localization

We consider the mobile localization problem in future millimeter-wave wi...

Please sign up or login with your details

Forgot password? Click here to reset