DocumentCode
564073
Title
An execution context aware approach for Web service substitution
Author
Zhang, Ming Wei ; Zhu, Zhi Liang ; Li, Dan Cheng ; Zhang, Bin ; Zhang, Li
Author_Institution
Northeastern Univ., Shenyang, China
fYear
2011
fDate
Nov. 29 2011-Dec. 1 2011
Firstpage
13
Lastpage
18
Abstract
Web service substitution refers to the problem of identifying an optimal service that can replace another service for the same abstract service in a composition. However, the quality of Web services is closely related to their execution context. For example, a Web service will have different performance if it is invoked in different network conditions, transferring and processing different data amount, or in different service host conditions. Most existing service substitution approaches ignore this issue so as to make the substituted composite service inefficient or even unexecutable. To solve this problem, an execution context aware approach for Web service substitution is proposed in this paper. Firstly the execution context data of composite services is recorded into log repositories. Then, the Web service execution context feature rules which qualitatively express the different performance of Web services in different execution context conditions are mined. At last, the discovered knowledge is applied to choose the optimal candidate substitutive service according to current execution context conditions. Extensive experimental results show that our approach can improve the robustness and efficiency of substituted composite services.
Keywords
Web services; ubiquitous computing; Web service substitution; composite services; execution context aware approach; execution context data; log repositories; Context; Data mining; Feature extraction; Monitoring; Quality of service; Vectors; Web services;
fLanguage
English
Publisher
ieee
Conference_Titel
Advanced Information Management and Service (ICIPM), 2011 7th International Conference on
Conference_Location
Jeju
Print_ISBN
978-1-4577-0471-0
Type
conf
Filename
6222149
Link To Document