Work place: Suleyman Demirel University Computer Engineering Department, E9 Building, West Campus, Isparta, 32200, Turkey
E-mail: ardacankaya@sdu.edu.tr
Website:
Research Interests: Computer systems and computational processes, Database Management System, Data Structures and Algorithms, Algorithm Design, Programming Language Theory
Biography
Ibrahim A. Cankaya received his B.S. degree in 2012 from Suleyman Demirel University Computer Engineering Department, Isparta, Turkey. He continues his Master education at Suleyman Demirel University Computer Engineering Department, Isparta, Turkey. He has been working as a Research Assistant in Suleyman Demirel University Computer Engineering Department since 2012. His research interest includes algorithm and programming, database management, mobile programming.
By Asim Sinan Yuksel Ibrahim Arda Cankaya Mehmet Erkan Yuksel
DOI: https://doi.org/10.5815/ijieeb.2015.02.04, Pub. Date: 8 Mar. 2015
The Web provides access to substantial amount of information. Metadata that means data about data enables the discovery of such information. When the metadata is effectively used, it increases the usefulness of the original data/resource and facilitates the resource discovery. Resource Description Framework (RDF) is a basis for handling these metadata and is a graph-based, self-describing data format that represents information about web-based resources. It is necessary to store the data persistently for many Semantic Web applications that were developed on RDF to perform effective queries. Because of the difficulty of storing and querying RDF data, several storage techniques have been proposed for these tasks. In this paper, we present the motivations for using the RDF data model. Several storage techniques are discussed along with the methods for optimizing the queries for RDF datasets. We present the differences between the Relational Database and the XML technology. Additionally, we specify some of the use cases for RDF. Our findings will shed light on the current achievements in RDF research by comparing the different methodologies for storage and optimization proposed so far, thus identifying further research areas.
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