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Federated Echo State Learning for Minimizing Breaks in Presence in Wireless Virtual Reality Networks - 2019

Federated Echo State Learning For Minimizing Breaks In Presence In Wireless Virtual Reality Networks

Research Area:  Machine Learning

Abstract:

In this paper, the problem of enhancing the virtual reality (VR) experience for wireless users is investigated by minimizing the occurrence of breaks in presence (BIP) that can detach the users from their virtual world. To measure the BIP for wireless VR users, a novel model that jointly considers the VR application type, transmission delay, VR video quality, and users awareness of the virtual environment is proposed. In the developed model, base stations (BSs) transmit VR videos to the wireless VR users using directional transmission links so as to provide high data rates for the VR users, thus, reducing the number of BIP for each user. Since the body movements of a VR user may result in a blockage of its wireless link, the location and orientation of VR users must also be considered when minimizing BIP. The BIP minimization problem is formulated as an optimization problem which jointly considers the predictions of users locations, orientations, and their BS association. To predict the orientation and locations of VR users, a distributed learning algorithm based on the machine learning framework of deep echo state networks (ESNs) is proposed. The proposed algorithm uses federated learning to enable multiple BSs to locally train their deep ESNs using their collected data and cooperatively build a learning model to predict the entire users locations and orientations. Using these predictions, the user association policy that minimizes BIP is derived. Simulation results demonstrate that the developed algorithm reduces the users BIP by up to 16% and 26%, respectively, compared to centralized ESN and deep learning algorithms.

Keywords:  

Author(s) Name:  Mingzhe Chen; Omid Semiari; Walid Saad; Xuanlin Liu; Changchuan Yin

Journal name:  IEEE Transactions on Wireless Communications

Conferrence name:  

Publisher name:  IEEE

DOI:  10.1109/TWC.2019.2942929

Volume Information:  ( Volume: 19, Issue: 1, Jan. 2020) Page(s): 177 - 191