Collaborative caching architecture for continuous query in mobile database

Problem statement: Cooperative caching, which allows sharing and coordination of cached data among clients, is a potential technique to improve the data access performance and availability in mobile ad hoc networks. However, variable data sizes, frequent data updates, limited client resources, insuf...

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Main Authors: Elfaki, Mohamed Ahmed, Ibrahim, Hamidah, Mamat, Ali, Othman, Mohamed
Format: Article
Language:English
Published: Science Publications 2011
Online Access:http://psasir.upm.edu.my/id/eprint/22475/1/ajebasp.2011.33.39.pdf
http://psasir.upm.edu.my/id/eprint/22475/
http://thescipub.com/html/10.3844/ajebasp.2011.33.39
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Institution: Universiti Putra Malaysia
Language: English
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spelling my.upm.eprints.224752016-06-10T08:48:26Z http://psasir.upm.edu.my/id/eprint/22475/ Collaborative caching architecture for continuous query in mobile database Elfaki, Mohamed Ahmed Ibrahim, Hamidah Mamat, Ali Othman, Mohamed Problem statement: Cooperative caching, which allows sharing and coordination of cached data among clients, is a potential technique to improve the data access performance and availability in mobile ad hoc networks. However, variable data sizes, frequent data updates, limited client resources, insufficient wireless bandwidth and client’s mobility make cache management faces many challenges. Approach: In this study, we propose a Cluster Cache Collaborative (CCC) to reduce the average delay and increase the local cache hit ratio. Our architecture considers several factors that affect cache performance, namely: access probability, query status, distance between the requester and data source/cache, and data size. A collaborative cache management strategy, intra/inter cluster, is developed that employs Last Recently Used (LRU) and Time-To-Live (TTL) as the replacement data policy. Results: Our proposed architecture is being evaluated and compared to previous study’ architectures, and result shows that our architecture is different from other approaches by including query status model into a collaborative caching architecture to reduce the number of hopes between the requested node and the source node. Conclusion/Discussion: Due to the limitations of previous study’ architectures, this study attempts to enhance the performance of the continuous query (collaborative cache management) with respect to the local cache hit ratio and the average delay. Science Publications 2011 Article PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/22475/1/ajebasp.2011.33.39.pdf Elfaki, Mohamed Ahmed and Ibrahim, Hamidah and Mamat, Ali and Othman, Mohamed (2011) Collaborative caching architecture for continuous query in mobile database. American Journal of Economics and Business Administration, 3 (1). pp. 33-39. ISSN 1945-5488; ESSN: 1945-5496 http://thescipub.com/html/10.3844/ajebasp.2011.33.39 10.3844/ajebasp.2011.33.39
institution Universiti Putra Malaysia
building UPM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Putra Malaysia
content_source UPM Institutional Repository
url_provider http://psasir.upm.edu.my/
language English
description Problem statement: Cooperative caching, which allows sharing and coordination of cached data among clients, is a potential technique to improve the data access performance and availability in mobile ad hoc networks. However, variable data sizes, frequent data updates, limited client resources, insufficient wireless bandwidth and client’s mobility make cache management faces many challenges. Approach: In this study, we propose a Cluster Cache Collaborative (CCC) to reduce the average delay and increase the local cache hit ratio. Our architecture considers several factors that affect cache performance, namely: access probability, query status, distance between the requester and data source/cache, and data size. A collaborative cache management strategy, intra/inter cluster, is developed that employs Last Recently Used (LRU) and Time-To-Live (TTL) as the replacement data policy. Results: Our proposed architecture is being evaluated and compared to previous study’ architectures, and result shows that our architecture is different from other approaches by including query status model into a collaborative caching architecture to reduce the number of hopes between the requested node and the source node. Conclusion/Discussion: Due to the limitations of previous study’ architectures, this study attempts to enhance the performance of the continuous query (collaborative cache management) with respect to the local cache hit ratio and the average delay.
format Article
author Elfaki, Mohamed Ahmed
Ibrahim, Hamidah
Mamat, Ali
Othman, Mohamed
spellingShingle Elfaki, Mohamed Ahmed
Ibrahim, Hamidah
Mamat, Ali
Othman, Mohamed
Collaborative caching architecture for continuous query in mobile database
author_facet Elfaki, Mohamed Ahmed
Ibrahim, Hamidah
Mamat, Ali
Othman, Mohamed
author_sort Elfaki, Mohamed Ahmed
title Collaborative caching architecture for continuous query in mobile database
title_short Collaborative caching architecture for continuous query in mobile database
title_full Collaborative caching architecture for continuous query in mobile database
title_fullStr Collaborative caching architecture for continuous query in mobile database
title_full_unstemmed Collaborative caching architecture for continuous query in mobile database
title_sort collaborative caching architecture for continuous query in mobile database
publisher Science Publications
publishDate 2011
url http://psasir.upm.edu.my/id/eprint/22475/1/ajebasp.2011.33.39.pdf
http://psasir.upm.edu.my/id/eprint/22475/
http://thescipub.com/html/10.3844/ajebasp.2011.33.39
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