DocumentCode :
60012
Title :
Novel Optimal and Scalable Nonfunctional Service Matchmaking Techniques
Author :
Kritikos, Kyriakos ; Plexousakis, Dimitris
Author_Institution :
Inf. Syst. Lab., Found. for Res. & Technol.-Hellas (FORTH), Heraklion, Greece
Volume :
7
Issue :
4
fYear :
2014
fDate :
Oct.-Dec. 2014
Firstpage :
614
Lastpage :
627
Abstract :
Service-orientation paves the way for the Internet of Services (IoS), where millions of services will be available to realize the everyday user applications or tasks. Consequently, as a great number of functionally equivalent services will be available for a specific user task, the service nonfunctional aspect should be considered for filtering and selecting among these services. The state-of-the-art approaches in nonfunctional service discovery exploit constraint solving techniques to optimize the matchmaking time between a service offer and demand pair. However, they do not scale well, as matchmaking time is proportional to the offer number, so they are not yet suitable for the IoS. To this end, this article proposes three novel alternative techniques that intelligently organize the service offer space to improve the overall matchmaking time. These techniques are theoretically and experimentally evaluated. The results show that all techniques optimize the matchmaking time without sacrificing accuracy and that each technique is better in different circumstances.
Keywords :
Internet of Things; Web services; Internet of Services; IoS; constraint solving techniques; nonfunctional service discovery; service demand; service filtering; service matchmaking techniques; service nonfunctional aspect; service offer; service orientation; service selection; Programming; Semantics; Service-oriented architecture; Transforms; QoS; discovery; matchmaking; mixed-integer programming; performance evaluation; service;
fLanguage :
English
Journal_Title :
Services Computing, IEEE Transactions on
Publisher :
ieee
ISSN :
1939-1374
Type :
jour
DOI :
10.1109/TSC.2013.11
Filename :
6464254
Link To Document :
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