DocumentCode
1341009
Title
Enhanced Fast Base Station Switching
Author
Chi, Kuang-Hui ; Chang, J. Morris ; Wang, Ting-Chung
Author_Institution
Dept. of Electr. Eng., Nat. Yunlin Univ. of Sci. & Technol., Douliu, Taiwan
Volume
11
Issue
11
fYear
2012
Firstpage
1640
Lastpage
1651
Abstract
IEEE 802.16-2009 specifies two fast handover mechanisms, fast base station switching and macro diversity handover, to streamline communication for a mobile station (MS). Both operate with a diversity set that lists base stations among which an MS can move its connection readily. In view that an unduly chosen diversity set may cause prohibitive cost, we provide means to prevent the diversity set from including base stations that are less likely to serve the MS in the near future. Inspired from the working-set model, our approach develops predictive handover using numerical extrapolation to accommodate temporal locality of the MS. While a joint entry-replacement strategy is exercised to evict least-preferred entries in the diversity set, its capacity is reviewed and tuned periodically allowing for reasonable space demand. Simulation results show that our approach, compared with the counterpart scheme, reduces handover executions by over 48 percent, handover delay by over 51 percent, and diversity-set space requirement by up to 17.9 percent on average. As another salient strength, our approach conforms fully to the standard, keeping current protocols on the MS side operable without modification. Qualitative and quantitative performance discussions indicate the usefulness of our approach in pragmatic settings.
Keywords
WiMax; extrapolation; mobility management (mobile radio); IEEE 802.16-2009; fast base station switching; handover mechanisms; macro diversity handover; mobile station; numerical extrapolation; streamline communication; Base stations; Estimation; IEEE 802.16 Standards; Mobile communication; Mobile computing; Protocols; Switches; IEEE 802.16; fast base station switching; macro diversity handover; predictive handover; trendline;
fLanguage
English
Journal_Title
Mobile Computing, IEEE Transactions on
Publisher
ieee
ISSN
1536-1233
Type
jour
DOI
10.1109/TMC.2011.208
Filename
6035715
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