DocumentCode
2626049
Title
Cell Reselection Parameter Optimization in UMTS
Author
Flore, Dino ; Brunner, Christopher ; Grilli, Francesco ; Vanghi, Vieri
Author_Institution
QUALCOMM Inc., San Diego, CA
fYear
2005
fDate
7-7 Sept. 2005
Firstpage
50
Lastpage
53
Abstract
With UMTS deployments well underway, one of the key performance metrics is standby time. In idle mode, standby time depends on the cell reselection mechanism. Operators can adjust stand-by time and camping cell quality performance by optimizing operator-configurable cell reselection parameters to, for instance, differentiate their service from others. In this paper, the impact of these parameters is investigated based on diverse field data from different characteristic RF environments (e.g. outdoor, indoor, low/high speed, pilot/not pilot polluted) collected in commercial networks. Performance metrics (camping cell quality, relative standby time) are computed for different parameter sets using a simulation platform that makes efficient use of over-sampled channel measurements to improve reliability and includes a standby-time model described below. Simulation results illustrate the tradeoffs for different parameter settings in different RF environments. Interestingly, camping cell quality and standby time do not always run in opposite directions
Keywords
3G mobile communication; quality of service; UMTS; camping cell quality; cell reselection parameter optimization; over-sampled channel measurements; relative standby time; 3G mobile communication; Computational modeling; Environmentally friendly manufacturing techniques; Monitoring; Noise measurement; Particle measurements; Pollution measurement; Radio frequency; Signal to noise ratio; Time measurement; UMTS; cell reselection; field measurements; idle mode; parameter optimization;
fLanguage
English
Publisher
ieee
Conference_Titel
Wireless Communication Systems, 2005. 2nd International Symposium on
Conference_Location
Siena
Print_ISBN
0-7803-9206-X
Type
conf
DOI
10.1109/ISWCS.2005.1547653
Filename
1547653
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