![]() Ĭorbellini, A., Mateos, C., Zunino, A., Godoy, D., & Schiaffino, S. 2015 8th International Conference on Advanced Software Engineering & Its Applications (ASEA), 41–47. Comparison of Relational Database with Document-Oriented Database (MongoDB) for Big Data Applications. Retrieved from Notes/08 Graph_Databases_Survey.pdfĬhickerur, S., Goudar, A., & Kinnerkar, A. Technical Report Department of Computer Science, Cal Poly San Luis Obispo. ![]() IEEE Transactions on Visualization and Computer Graphics, 16(6), 1073–1081. GeneaQuilts: A system for exploring large genealogies. īezerianos, A., Dragicevic, P., Fekete, J. Kata Kunci: performa database, directed acyclic graph, relational database, document-oriented database, graph databaseĪngles, R., & Gutierrez, C. Hasil penelitian menunjukan bahwa relational database (PostgreSQL) memiliki performa terbaik dalam operasi SWS dan SR dibandingkan document-oriented database (MongoDB) dan graph database (Neo4j). ![]() Hasil pengujian performa PostgreSQL dalam operasi SWS sebesar 0.64ms dan SR sebesar 0.32ms, performa MongoDB pada SWS sebesar 0.64ms dan SR sebesar 4.59ms sedangkan performa Neo4j pada operasi SWS sebesar 9.92ms dan SR sebesar 8.92ms. Metode yang dilakukan adalah mengimplentasi dataset yang memiliki 3910 node dalam operasi single write synchronous (SWS) dan single read (SR) pada setiap database menggunakan Node.js dalam Windows 10. Tujuan penelitian ini adalah membandingkan performa dari relational database (PostgreSQL), document-oriented database (MongoDB) dan graph database (Neo4j) pada data DAG. Oleh karena itu perlu diketahui database yang tepat khususnya untuk data DAG. Setiap jenis database memiliki performa yang berbeda sesuai dengan struktur data yang ditangani. Keywords : database performance, directed acyclic graph, relational database, document-oriented database, graph databaseĭirected Acyclic Graph (DAG) adalah graf berarah tanpa putaran yang dapat ditemui pada data jejaring sosial dan silsilah keluarga. Hence, relational database (PostgreSQL) has better performance in the operation of SWS and SR than document-oriented database (MongoDB) and graph database (Neo4j). The access performance of PostgreSQL is 0.64ms on SWS and 0.32ms on SR, MongoDB is 0.64ms on SWS and 4.59ms on SR, and Neo4j is 9.92ms on SWS and 8.92ms on SR. The performance test is done on Node.js running on Windows 10 and uses the dataset that has 3910 nodes in single write synchronous (SWS) and single read (SR). ![]() A performance comparison among relational database (PostgreSQL), document-oriented database (MongoDB), and graph database (Neo4j) on a DAG dataset are then conducted to get the appropriate database type. Based on the characteristic of DAG data, a suitable database type should be evaluated and then chosen as a platform. Directed Acyclic Graph (DAG) is a directed graph which is not cyclic and is usually employed in social network and data genealogy. ![]()
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