DocumentCode
2115117
Title
Contact-duration aware transmission scheduling in WiFi Direct enabled mobile social networks
Author
Mao, Zhifei ; Wang, Xiang ; Jiang, Yuming
Author_Institution
Department of Telematics, Norwegian University of Science and Technology, Norway
fYear
2015
fDate
8-12 June 2015
Firstpage
1581
Lastpage
1586
Abstract
Increasingly more devices are using WiFi Direct to establish direct, peer-to-peer connections to each other. By leveraging opportunistic communications through WiFi Direct, mobile social networks (MSNs) enable people with mobile devices to share information without the support of Internet connection. However, the half-duplex nature of WiFi Direct does not allow connected nodes to transmit data simultaneously over the connection. In addition, the contact duration among mobile nodes in an MSN tends to be short due to their mobility. As a result, they may not be able to exchange all information as they intend to. In this case, how to schedule the transmission of contacting nodes during the limited contact duration becomes a fundamental issue. In this paper, we design a contact-duration aware transmission scheduling scheme that allows nodes to transmit data in a fair manner. First, we propose a duration allocation problem, that is, how long time each node should be allocated to transmit data within a predicted contact duration. This problem is addressed using Nash bargaining solution. Second, we formulate a fractional knapsack problem to decide which data to send during the allocated transmission time. Third, based on the theoretical results, we design a frame-by-frame scheme to schedule the transmissions of nodes. Finally, we evaluate the performance of our contact-duration aware transmission scheduling scheme through simulations.
Keywords
Conferences; Games; IEEE 802.11 Standard; Peer-to-peer computing; Resource management; Schedules; Social network services;
fLanguage
English
Publisher
ieee
Conference_Titel
Communication Workshop (ICCW), 2015 IEEE International Conference on
Conference_Location
London, United Kingdom
Type
conf
DOI
10.1109/ICCW.2015.7247405
Filename
7247405
Link To Document