Academic literature on the topic 'Replication distributed database'

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Journal articles on the topic "Replication distributed database"

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Hamad Thalij, Saadi, and Veli Hakkoymaz. "A Case Study of Snapshot Replication and Transfer of Data in Distributed Databases." Tikrit Journal of Pure Science 23, no. 10 (2019): 87. http://dx.doi.org/10.25130/j.v23i10.765.

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The database replication refers to distributing a database among multiple locations. There are three kinds of database replication system: snapshot, transactional and merge. The snapshot replication refers to the fragment of database items and distributing them to multi databases at once. An important goal in this paper is to experiment with a distributed database study the snapshot replication and examine the issues associated with it. In this work, the data from another database is used to increase availability and flexibility as well as provide the information exchange between databases. In
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Saadi Hamad Thalij and Veli Hakkoymaz. "A Case Study of Snapshot Replication and Transfer of Data in Distributed Databases." Tikrit Journal of Pure Science 23, no. 10 (2019): 97–101. http://dx.doi.org/10.25130/tjps.v23i10.571.

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The database replication refers to distributing a database among multiple locations. There are three kinds of database replication system: snapshot, transactional and merge. The snapshot replication refers to the fragment of database items and distributing them to multi databases at once. An important goal in this paper is to experiment with a distributed database study the snapshot replication and examine the issues associated with it. In this work, the data from another database is used to increase availability and flexibility as well as provide the information exchange between databases. In
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Muh., Hidayat Darmawan, Isnawaty, and Subardin. "PERANCANGAN DAN IMPLEMENTASI SISTEM REPLIKASI DATABASE TERDISTRIBUSI PADA FAKULTAS TEKNIK UNIVERSITAS HALU OLEO." semanTIK 4, no. 2 (2018): 91–98. https://doi.org/10.5281/zenodo.1493829.

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<strong><em>Abstract</em></strong> <em>Current technological developments are very influential on the process of data distribution that is demanded fast because every second of information can change. One of the methods used in data exchange is to use data replication in a distributed database. The speed of the process and the number of rows that can be replicated in units of time are some of the things that can be taken into consideration when trying to determine how to replicate data in a distributed database.</em> <em>In replication, a software is used to find or more precisely track change
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Noor, Ahmad Shukri Mohd, Auni Fauzi Che Fauzi, Ainul Azila Che Fauzi, Noraziah Ahmad, and Mohamad Syauqi Mohamad Arifin. "An automate failure recovery for synchronous distributed database system." Indonesian Journal of Electrical Engineering and Computer Science 28, no. 2 (2022): 973–79. https://doi.org/10.11591/ijeecs.v28.i2.pp973-979.

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Periodically, researchers have been sharing their constant attempts to improve the existing methods for data replication in distributed database system. The main goal is to work for an efficient distributed environment. An efficient environment may handle huge amount of data and preserve data availability. The occasionally failures in distributed systems will affect the end results, such as data loss, income loss etc. Thus, to prevent the data loss and guarantee the continuity of the business, many organizations have applied disaster recovery solutions in their system. One of the widely used i
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GALLERSDÖRFER, RAINER, MATTHIAS JARKE, and MATTHIAS NICOLA. "THE ADR REPLICATION MANAGER." International Journal of Cooperative Information Systems 08, no. 01 (1999): 15–45. http://dx.doi.org/10.1142/s0218843099000034.

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ADR (Atomic Delayed Replication) is a controllable replication manager implemented on top of commercial distributed relational databases. ADR's goal is to enable various well-defined trade-offs between database coherence, throughput and response time in large database networks, e.g. for telecom applications. By combining a strategy for distributed database design with a specific replication protocol, ADR preserves the ACID properties with a controlled relaxation of coherence between primary and secondary copies. We first discuss formal characteristics of ADR, and present the implementation tec
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SRINIVASAN, JAGANNATHAN, YIN-HE JIANG, YONGGUANG ZHANG, and BHARAT BHARGAVA. "PERFORMANCE STUDY ON SUPPORTING OBJECTS IN O-RAID DISTRIBUTED DATABASE SYSTEM." International Journal of Cooperative Information Systems 02, no. 02 (1993): 225–47. http://dx.doi.org/10.1142/s0218215793000113.

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O-Raid [1, 2] uses a layered approach to provide support for objects on top of a distributed relational database system called RAID [3], It reuses the replication controller of RAID to allow replication of simple objects as well as replication of composite objects. In this paper, we first describe the experiments conducted on O-Raid that measure the overheads incurred in supporting objects through a layered implementation, and the overheads involved in replicating objects. The overheads are low (e.g. 4ms for an insert query involving objects). We present experiments that evaluate three replica
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Che Fauzi, Ainul Azila, A. Noraziah, Wan Maseri Binti Wan Mohd, A. Amer, and Tutut Herawan. "Managing Fragmented Database Replication for Mygrants Using Binary Vote Assignment on Cloud Quorum." Applied Mechanics and Materials 490-491 (January 2014): 1342–46. http://dx.doi.org/10.4028/www.scientific.net/amm.490-491.1342.

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Replication in distributed database is the process of copying and maintaining database objects in multiple databases that make up a distributed database system. In this paper, we will manage fragmented database replication and transaction management for Malaysian Greater Research Network (MyGRANTS) using a new proposed algorithm called Binary Vote Assignment on Cloud Quorum (BVACQ). This technique will combine replication and fragmentation. Fragmentation in distributed database is very useful in terms of usage, efficiency, parallelism and also for security. This strategy will partition the dat
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Naqvi, Kaynat Zehra. "Difficulties Associated with Replicated Data in Distributed Real-Time Database Systems." INTERANTIONAL JOURNAL OF SCIENTIFIC RESEARCH IN ENGINEERING AND MANAGEMENT 08, no. 04 (2024): 1–5. http://dx.doi.org/10.55041/ijsrem30824.

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In both Distributed and Real Time Databases Systems replication are interesting areas for the new researchers. In this paper, we provide an overview to compare replication techniques available for these database systems. Data consistency and scalability are the issues that are considered in this paper. Those issues are maintaining consistency between the actual state of the real-time object of the external environment and its images as reflected by all its replicas distributed over multiple nodes. We discuss a frame to create a replicated real- time database and preserve all timing constrains.
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Azizah, Nur, Veranda Hartajaya, and Sandi Riady. "Comparison Of Replication Strategies On Distributed Database Systems." International Journal of Cyber and IT Service Management 2, no. 1 (2022): 20–29. http://dx.doi.org/10.34306/ijcitsm.v2i1.70.

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Today's computer applications have ever-increasing database system capabilities and performance. The growing amount of data that has to be processed in a business company makes centralized data processing ineffective. This inefficiency shows itself as a long reaction time. This is in direct opposition to the purpose of utilizing databases in data processing, which is to reduce the amount of time it takes to process data. Another database design is required to tackle this problem. Distributed database technology refers to an architecture in which several servers are linked together, and each on
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Neiheiser, Ray, Roland Schmitz, Luciana Rech, and Manfredo Manfredini. "Efficient Fault-Tolerant Transactions for Distributed Graph Database." Singular Engenharia, Tecnologia e Gestão 1, no. 2 (2019): 14–20. http://dx.doi.org/10.33911/singular-etg.v1i2.59.

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Through the ongoing trend in graph technologies due to the massive growth of linked data produced by social networks graph databases gained popularity. Replication, a common approach to increase availability in databases, is also used by diverse graph database solutions. Few approaches implementing fault-tolerance in graph databases have been proposed yet.This paper considers deferred update replication using atomic broadcast in order to implement fault-tolerance in distributed graph databases. The main contribution of this paper is a deferred update algorithm adapted to graph databases offeri
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Dissertations / Theses on the topic "Replication distributed database"

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Mathiason, Gunnar. "Virtual Full Replication for Scalable Distributed Real-Time Databases." Doctoral thesis, Linköpings universitet, Institutionen för datavetenskap, 2009. http://urn.kb.se/resolve?urn=urn:nbn:se:liu:diva-20661.

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A fully replicated distributed real-time database provides high availability and predictable access times, independent of user location, since all the data is available at each node. However, full replication requires that all updates are replicated to every node, resulting in exponential growth of bandwidth and processing demands with the number of nodes and objects added. To eliminate this scalability problem, while retaining the advantages of full replication, this thesis explores Virtual Full Replication (ViFuR); a technique that gives database users a perception of using a fully replicate
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Chouk, Mabrouk. "Master-slave replication, failover and distributed recovery in PostgreSQL database." Thesis, McGill University, 2003. http://digitool.Library.McGill.CA:80/R/?func=dbin-jump-full&object_id=19689.

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The subject of this thesis is synchronous master-slave database replication, failover and distributed recovery for a cluster of database servers. Our replication solution allows updates on the master, and queries on ail sites. Updates of transactions are sent to ail sites before they are committed on the master. To do this, we take advantage of the semantics of group communication Systems. With failover, there is always a master in the group. Distributed recovery ensures that a site that has been introduced in the System brings its own copy of the database to be consistent with the rest of the
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Gu, Xuan. "Selective Data Replication for Distributed Geographical Data Sets." Thesis, University of Canterbury. Computer Science and Software Engineering, 2008. http://hdl.handle.net/10092/2545.

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The main purpose of this research is to incorporate additional higher-level semantics into the existing data replication strategies in such a way that their flexibility and performance can be improved in favour of both data providers and consumers. The resulting approach from this research is referred to as the selective data replication system. With this system, the data that has been updated by a data provider is captured and batched into messages known as update notifications. Once update notifications are received by data consumers, they are used to evaluate so-called update policies, whic
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Mathiason, Gunnar. "Segmentation in a Distributed Real-Time Main-Memory Database." Thesis, University of Skövde, Department of Computer Science, 2002. http://urn.kb.se/resolve?urn=urn:nbn:se:his:diva-737.

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<p>To achieve better scalability, a fully replicated, distributed, main-memory database is divided into subparts, called segments. Segments may have individual degrees of redundancy and other properties that can be used for replication control. Segmentation is examined for the opportunity of decreasing replication effort, lower memory requirements and decrease node recovery times. Typical usage scenarios are distributed databases with many nodes where only a small number of the nodes share information. We present a framework for virtual full replication that implements segments with scheduled
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Olby, Johan. "Partition Aware Database Replication : A state-update transfer strategy based on PRiDe." Thesis, University of Skövde, School of Humanities and Informatics, 2007. http://urn.kb.se/resolve?urn=urn:nbn:se:his:diva-396.

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<p>Distributed real-time databases can be used to support data sharing</p><p>for applications in wireless ad-hoc networks. In such networks, topology changes frequently and partitions may be unpredictable and last for an unbounded period. In this thesis, the existing database replication protocol PRiDe is extended to handle such long-lasting partitions. The protocol uses optimistic and detached replication to provide predictable response times in unpredictable networks and forward conflict resolution to guarantee progress.</p><p>The extension, pPRiDe, combines update and state transfer strateg
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Ruiz, Fuertes María Idoia. "On the Consistency, Characterization, Adaptability and Integrity of Database Replication Systems." Doctoral thesis, Universitat Politècnica de València, 2011. http://hdl.handle.net/10251/11800.

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Desde la aparición de las primeras bases de datos distribuidas hasta los actuales sistemas de replicación modernos, la comunidad de investigación ha propuesto múltiples protocolos para administrar la distribución y replicación de datos, junto con algoritmos de control de concurrencia para manejar las transacciones en ejecución en todos los nodos del sistema. Muchos protocolos están disponibles, por tanto, cada uno con diferentes características y rendimiento, y garantizando diferentes niveles de coherencia. Para saber qué protocolo de replicación es el más adecuado, dos aspectos deben se
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Milton, Robert. "CORBA in the aspect of replicated distributed real-time databases." Thesis, University of Skövde, Department of Computer Science, 2002. http://urn.kb.se/resolve?urn=urn:nbn:se:his:diva-644.

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<p>A distributed real-time database (DRTDB) is a database distributed over a network on several nodes and where the transactions are associated with deadlines. The issues of concern in this kind of database are data consistency and the ability to meet deadlines. In addition, there is the possibility that the nodes, on which the database is distributed, are heterogeneous. This means that the nodes may be built on different platforms and written in different languages. This makes the integration of these nodes difficult, since data types may be represented differently on different nodes. The com
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Ковальчук, Б. В. "Можливості технології Blockchain". Thesis, Сумський державний університет, 2018. http://essuir.sumdu.edu.ua/handle/123456789/66875.

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У сучасному світі проходить масова електронізація та автоматизація більшості сфер народного господарства, інформаційні технології впроваджуються у найрізноманітніші процеси в управлінні, виробництві, економіці та комерції. Оцифрування ключових сфер діяльності людини вимагає надійних технологій захисту, обробки та зберігання інформації, такі можливості надає технологія blockchain.
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Solat, Siamak. "Novel fault-tolerant, self-configurable, scalable, secure, decentralized, and high-performance distributed database replication architecture using innovative sharding to enable the use of BFT consensus mechanisms in very large-scale networks." Electronic Thesis or Diss., Université Paris Cité, 2023. http://www.theses.fr/2023UNIP7025.

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Cette thèse de doctorat se compose de 6 chapitres. Dans le premier chapitre, en guise d'introduction, nous donnons un aperçu des objectifs généraux et des motivations des réseaux décentralisés et permissionless, ainsi que des obstacles auxquels ils sont confrontés. Dans l'introduction, nous évoquons également la solution irrationnelle et illogique, connue sous le nom de « blockchain permissioned », qui a été proposée pour améliorer les performances des réseaux similaires à Bitcoin. Cette question a été détaillée au chapitre 5. Dans le chapitre 2, nous rendons clairs et intelligibles les systèm
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Xiong, Fanfan. "Resource Efficient Parallel VLDB with Customizable Degree of Redundancy." Diss., Temple University Libraries, 2009. http://cdm16002.contentdm.oclc.org/cdm/ref/collection/p245801coll10/id/43445.

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Computer and Information Science<br>Ph.D.<br>This thesis focuses on the practical use of very large scale relational databases. It leverages two recent breakthroughs in parallel and distributed computing: a) synchronous transaction replication technologies by Justin Y. Shi and Suntain Song; and b) Stateless Parallel Processing principle pioneered by Justin Y. Shi. These breakthroughs enable scalable performance and reliability of database service using multiple redundant shared-nothing database servers. This thesis presents a Functional Horizontal Partitioning method with customizable degree o
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Books on the topic "Replication distributed database"

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(Ricardo), Jiménez-Peris R., and Patiño-Martínez M. (Marta), eds. Database replication. Morgan & Claypool, 2010.

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Charron-Bost, Bernadette, Fernando Pedone, and André Schiper. Replication: Theory and practice. Springer-Verlag, 2010.

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Odunlami, Oyepero. Replication and consistency control in a distributed database management system. University of East London, 2000.

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Chaturvedi, Alok R. A machine learning approach to the design of time invariant fragments for replication in a distributed database environment. Institute for Research in the Behavioral, Economic, and Management Sciences, Krannert Graduate School of Management, Purdue University, 1989.

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Otim, Charles Johnson. Replication over the Internet: An alternative to distributed databases. University of East London, 2003.

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Jimenez-Peris, Ricardo, Marta Patino-Martinez, and Bettina Kemme. Database Replication. Springer International Publishing AG, 2010.

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Paul, Sujoy. Pro SQL Server 2005 Replication (Definitive Guide). Apress, 2006.

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WebSphere replication server for z/OS using Q replication: High availability scenarios for the z/OS platform. IBM International Technical Support Organization, 2006.

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Websphere Replication Server for Z/os Using Q Replication: High Availability Scenarios for the Z/os Platform. Ibm, 2006.

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Book chapters on the topic "Replication distributed database"

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Özsu, M. Tamer, and Patrick Valduriez. "Data Replication." In Principles of Distributed Database Systems. Springer International Publishing, 2019. http://dx.doi.org/10.1007/978-3-030-26253-2_6.

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Frikken, Keith B. "Optimal Distributed Declustering Using Replication." In Database Theory - ICDT 2005. Springer Berlin Heidelberg, 2004. http://dx.doi.org/10.1007/978-3-540-30570-5_10.

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Özsu, M. Tamer, and Patrick Valduriez. "Data Replication." In Principles of Distributed Database Systems, Third Edition. Springer New York, 2011. http://dx.doi.org/10.1007/978-1-4419-8834-8_13.

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Kemme, Bettina. "Database Replication Based on Group Communication: Implementation Issues." In Future Directions in Distributed Computing. Springer Berlin Heidelberg, 2003. http://dx.doi.org/10.1007/3-540-37795-6_24.

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Bernabé-Gisbert, Josep M., Raúl Salinas-Monteagudo, Luis Irún-Briz, and Francesc D. Muñoz-Escoí. "Managing Multiple Isolation Levels in Middleware Database Replication Protocols." In Parallel and Distributed Processing and Applications. Springer Berlin Heidelberg, 2006. http://dx.doi.org/10.1007/11946441_49.

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Al-Areqi, Samih, Amjad Hudaib, and Nadim Obeid. "Improving Availability in Distributed Component-Based Systems via Replication." In New Challenges for Intelligent Information and Database Systems. Springer Berlin Heidelberg, 2011. http://dx.doi.org/10.1007/978-3-642-19953-0_5.

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Yadav, Arun Kumar, Ajay Agarwal, and S. Rahmatkar. "An Efficient Approach for Data Replication in Distributed Database Systems." In Information Technology and Mobile Communication. Springer Berlin Heidelberg, 2011. http://dx.doi.org/10.1007/978-3-642-20573-6_64.

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Katta, Rasin, Ammar Alhaj Ali, Bronislav Chramcov, Said Krayem, and Roman Jasek. "Formal Development of Fault Tolerance by Replication of Distributed Database Systems." In Software Engineering and Algorithms. Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-77442-4_25.

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Masunaga, Yoshifumi. "Management of Table Partitioning and Replication in a Distributed Relational Database System." In Foundations of Data Organization. Springer US, 1987. http://dx.doi.org/10.1007/978-1-4613-1881-1_12.

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Deris, M. Mat, N. Bakar, M. Rabiei, and H. M. Suzuri. "Diagonal Replication on Grid for Efficient Access of Data in Distributed Database Systems." In Computational Science - ICCS 2004. Springer Berlin Heidelberg, 2004. http://dx.doi.org/10.1007/978-3-540-24688-6_51.

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Conference papers on the topic "Replication distributed database"

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Grebla, H. A., and C. Cenan. "Distributed database replication - a game theory?" In Seventh International Symposium on Symbolic and Numeric Algorithms for Scientific Computing (SYNASC'05). IEEE, 2005. http://dx.doi.org/10.1109/synasc.2005.33.

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Lin, Yi, Bettina Kemme, Marta Patino-Martinez, and Ricardo Jimenez-Peris. "Enhancing Edge Computing with Database Replication." In 2007 26th IEEE International Symposium on Reliable Distributed Systems (SRDS 2007). IEEE, 2007. http://dx.doi.org/10.1109/srds.2007.10.

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Lin, Yi, Bettina Kemme, Marta Patino-Martinez, and Ricardo Jimenez-Peris. "Enhancing Edge Computing with Database Replication." In 2007 26th IEEE International Symposium on Reliable Distributed Systems (SRDS 2007). IEEE, 2007. http://dx.doi.org/10.1109/srds.2007.4365683.

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Salas, J., R. Jimenez-Peris, M. Patino-Martinez, and B. Kemme. "Lightweight Reflection for Middleware-based Database Replication." In 2006 25th IEEE Symposium on Reliable Distributed Systems (SRDS'06). IEEE, 2006. http://dx.doi.org/10.1109/srds.2006.28.

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Son, S. H. "A resilient replication method in distributed database systems." In IEEE INFOCOM '89, Proceedings of the Eighth Annual Joint Conference of the IEEE Computer and Communications Societies. IEEE, 1989. http://dx.doi.org/10.1109/infcom.1989.101476.

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Pupezescu, Valentin. "ADVANCES IN KNOWLEDGE DISCOVERY IN DISTRIBUTED DATABASES." In eLSE 2015. Carol I National Defence University Publishing House, 2015. http://dx.doi.org/10.12753/2066-026x-15-046.

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The Knowledge Discovery in Distributed Databases is the process of extracting useful information from a collection of data stored in distributed databases. A distributed database is a collection of data replicated over a number of different computers. The best suited structures for working with distributed databases are the Distributed Committee-Machines. Distributed Committee-Machines are a combination of neural networks that work in a distributed manner as a group in order to obtain better performance than individual neural networks in solving data mining tasks inside the KDD process. In thi
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Abdul-Wahid, Sarah, Razvan Andonie, Joseph Lemley, James Schwing, and Jonathan Widger. "Adaptive Distributed Database Replication Through Colonies of Pogo Ants." In 2007 IEEE International Parallel and Distributed Processing Symposium. IEEE, 2007. http://dx.doi.org/10.1109/ipdps.2007.370575.

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Lieskovsky, Anton, Jan Janech, and Tomas Baca. "Data replication in distributed database systems in VANET environment." In 2011 IEEE 2nd International Conference on Software Engineering and Service Science (ICSESS). IEEE, 2011. http://dx.doi.org/10.1109/icsess.2011.5982314.

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Lieskovsky, Anton, Jan Janech, and Tomas Baca. "Data replication in distributed database systems in VANET environment." In 2011 11th International Conference on ITS Telecommunications (ITST). IEEE, 2011. http://dx.doi.org/10.1109/itst.2011.6060098.

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Ulusoy, Özgür. "Data replication versus timing constraints in distributed database systems." In the 22nd annual ACM computer science conference. ACM Press, 1994. http://dx.doi.org/10.1145/197530.197640.

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Reports on the topic "Replication distributed database"

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Peddi, Praveen, and Lisa C. DiPippo. A Replication Strategy for Distributed Real-Time Object-Oriented Databases. Defense Technical Information Center, 2002. http://dx.doi.org/10.21236/ada477629.

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