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The structure has been put forward of P2P systems are strictly based on the keyword matching to find the way of routing resources, so the routing mechanism will not be able to reflect the massive, distributed resources, and semantic information, thus reducing the precision of service discovery and search prospective
With the number of registered Web services growing, Identifying desired Web service is crucial for Web users. Current keyword based service search are inefficient in two main aspects: poor scalability and lack of semantics. Firstly ,the users are overwhelmed by the huge number of irrelevant services returned. Secondly
The proliferation of Web services demands for a discovery mechanism to find advertisements that satisfy the requests more accurately. OWL-S provides a capability-based description and logic inference mechanism for semantically matching. UDDI provides a registry of businesses and Web services, but its keyword search
the strengths of functional semantics, keyword matching, structural & syntactic matching and semantic. The broker architecture with automatic Web service publishing and discovery mechanisms is implemented and the experimentation reveals that, the discovery mechanism is effective in terms of Recall and Precision.
Social annotation provides a convenient way to annotate shared content by allowing users to use any tag or keyword. While free folksonomy is widely used in social software implementations and especially in web services, it will play an important role in the semantic web services. However, such tags cannot offer the
presented. Extensible experiment results demonstrate that annotated web services by our proposed method can more satisfy requirements of service requesters than keyword-based described web services. It can achieve higher service discovery effectiveness.
well define these conceptions and the relationship between these conceptions. In this way, errors and failures generated due to misunderstanding the conceptions are reduced, function-based services are much easier to be discovered and combined, and in the meantime, the deficiency in keyword-based search technology of UDDI
(UDDI) was not designed to accommodate these emerging requirements. To solve the problems of storing QoS in UDDI and aggregating QoS values, three different approaches, namely type, keyword based and ontological approaches to model QoS tModel (technical model) have been proposed. The aim is to study these approaches and
Web Service classification becomes more essential with the increasing number of Web Services. The current practical approach for management and discovery is based on keyword search techniques. In this paper, we present an approach based on semantic reasoning and ontology techniques in order to organize web services
The important step towards Web service implement is the discovery of required services. Traditional Web service uses UDDI, WSDL standards etc. Keywords based searching is used in the traditional service discovery. For needing manual intervention and lack of semantic description, the methods before have low precision
into the server. Each of the file data or Web data is viewed as a memex event that can be described by 4W1H form. The memex event ontology is used to transform the various types of data to the standard 4W1H form. Users can view their life log chronologically and search them by keywords. Moreover, the life logs can be
components, assembling programs etc., but also imports ontology repository and user interest model. In order to implement program mining, we propose a component repository model based on ontology. Meanwhile, a new and efficient search mechanism is put forward which combines the search mechanism of facet, keywords, ontology and
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