Title :
Location-aware cache replacement for mobile environments
Author :
Lai, Kwong Yuen ; Tari, Zahir ; Bertok, Peter
Author_Institution :
Sch. of Comput. Sci. & Inf. Technol., R. Melbourne Inst. of Technol., Vic., Australia
fDate :
29 Nov.-3 Dec. 2004
Abstract :
Traditional cache replacement policies rely on the temporal locality of users´ access pattern to improve cache performance. These policies, however, are not ideal in supporting mobile clients. As mobile clients can move freely from one location to another, their access pattern not only exhibits temporal locality, but also exhibits spatial locality. In order to ensure efficient cache utilisation, it is important to take into consideration the location and movement direction of mobile clients when performing cache replacement. In this paper. we propose a mobility-aware cache replacement policy, called MARS, suitable for wireless environments. MARS takes into account important factors (e.g. client access rate, access probability, update probability and client location) in order to improve the effectiveness of onboard caching for mobile clients. Test results show that MARS consistently outperforms existing cache replacement policies and significantly improves mobile clients´ cache hit ratio.
Keywords :
cache storage; mobility management (mobile radio); MARS; access probability; cache hit ratio; client access rate; client location; efficient cache utilisation; location dependent information; location-aware cache replacement; mobile client access pattern; mobility-aware cache replacement policy; onboard caching; update probability; Availability; Bandwidth; Computer science; Cost function; Information technology; Mars; Mobile communication; Network servers; Telecommunication traffic; Testing;
Conference_Titel :
Global Telecommunications Conference, 2004. GLOBECOM '04. IEEE
Print_ISBN :
0-7803-8794-5
DOI :
10.1109/GLOCOM.2004.1379006