Title
Strategic Control of 60 GHz Millimeter-Wave High-Speed Wireless Links for Distributed Virtual Reality Platforms.
Abstract
This paper discusses the stochastic and strategic control of 60GHz millimeter-wave (mmWave) wireless transmission for distributed and mobile virtual reality (VR) applications. In VR scenarios, establishing wireless connection between VR data-center (called VR server (VRS)) and head-mounted VR device (called VRD) allows various mobile services. Consequently, utilizing wireless technologies is obviously beneficial in VR applications. In order to transmit massive VR data, the 60GHz mmWave wireless technology is considered in this research. However, transmitting the maximum amount of data introduces maximum power consumption in transceivers. Therefore, this paper proposes a dynamic/adaptive algorithm that can control the power allocation in the 60GHz mmWave transceivers. The proposed algorithm dynamically controls the power allocation in order to achieve time-average energy-efficiency for VR data transmission over 60GHz mmWave channels while preserving queue stabilization. The simulation results show that the proposed algorithm presents desired performance.
Year
DOI
Venue
2017
10.1155/2017/5040347
MOBILE INFORMATION SYSTEMS
Field
DocType
Volume
Wireless network,Transceiver,Wireless,Virtual reality,Data transmission,Computer science,Communication channel,Computer network,Real-time computing,Adaptive algorithm,Maximum power principle
Journal
2017
ISSN
Citations 
PageRank 
1574-017X
1
0.37
References 
Authors
6
3
Name
Order
Citations
PageRank
Joongheon Kim161181.49
Jae-Jin Lee2278.69
Woojoo Lee310410.96