DocumentCode :
2907476
Title :
Optimal Mobility-Aware Handoff in Mobile Environments
Author :
Ni, Lei ; Zhu, Yanmin ; Li, Bo ; Deng, Qianni
Author_Institution :
Shanghai Key Lab. of Scalable Comput. & Syst., Shanghai Jiao Tong Univ., Shanghai, China
fYear :
2011
fDate :
7-9 Dec. 2011
Firstpage :
534
Lastpage :
540
Abstract :
Mobile terminals with multi-radio devices have become increasingly prevalent. This makes it possible for Internet applications being supported by heterogeneous wireless networks while the terminal is on move. As the user is constantly moving, it is highly desirable that the terminal connects to the best network and retains high performance of Internet connection. Handoff can be made within the same type of network or different types of networks. A vertical handoff may interrupt the ongoing activity but may also bring higher performance. Handoff in such a heterogeneous mobile environment faces several challenges, such as user mobility randomness, handoff overhead and optimality requirement. Existing work often focuses only on the current network condition when making handoff decisions, ignoring user mobility patterns. As a result, a handoff decision good for the present may soon become poor when the user moves to another place. Importantly, the current handoff decision may influence the future performance of the user´s connection. This paper proposes an optimal handoff algorithm that explicitly exploits user mobility patterns, with which we can effectively predict further locations of a user. This algorithm can produce optimal handoff decisions in the long run. Employing a comprehensive framework for preference customization, the algorithm supports user customization caring for different user preferences. We conduct extensive real trace driven simulation experiments and comparative study shows our algorithm is better than the typical algorithms.
Keywords :
Internet; mobile computing; mobility management (mobile radio); optimisation; Internet connection; handoff overhead; heterogeneous mobile environment; heterogeneous wireless networks; mobile terminals; multiradio devices; optimal handoff decisions; optimal mobility-aware handoff algorithm; optimality requirement; preference customization; user customization; user mobility patterns; user mobility randomness; vertical handoff; Base stations; Entropy; Markov processes; Mobile communication; Performance gain; Sensors; Wireless networks; Markov decision process; Mobility-aware; entropy; handoff;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Parallel and Distributed Systems (ICPADS), 2011 IEEE 17th International Conference on
Conference_Location :
Tainan
ISSN :
1521-9097
Print_ISBN :
978-1-4577-1875-5
Type :
conf
DOI :
10.1109/ICPADS.2011.89
Filename :
6121321
Link To Document :
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