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Distributed Processing System, 2020, 1(3); doi: 10.38007/DPS.2020.010302.

Fault Handling Method of Distributed System Based on Large Scale Dynamic Programming

Author(s)

Constantinos Kokkinos

Corresponding Author:
Constantinos Kokkinos
Affiliation(s)

Democritus University of Thrace, Greece

Abstract

With the rapid improvement of Internet and information construction in all walks of life, the traditional centralized storage system is gradually replaced by the distributed storage system. Fault processing method based on distributed system is a research hotspot in the field of power system fault identification. The purpose of this paper is to integrate large-scale dynamic programming with distributed system fault handling methods. Through the research of large-scale dynamic programming and its algorithm and distributed system, the relevant fault handling methods are proposed. In the experiment, we construct the system execution flow and use the dynamic planning algorithm to study and analyze the usability and universality of the distributed system dynamic planning application.

Keywords

Large Scale Network, Dynamic Planning, Distributed System, System Fault Handling Method

Cite This Paper

Constantinos Kokkinos. Fault Handling Method of Distributed System Based on Large Scale Dynamic Programming. Distributed Processing System (2020), Vol. 1, Issue 3: 9-16. https://doi.org/10.38007/DPS.2020.010302.

References

[1] Ahmed M K, Ali A, Aminu A A, et al. Multi-Agent based Capital Market Management System: A Distributed Framework for Trading and Regulation. International Journal of Managing Information Technology, 2020, 13(2):1-14.

[2] Beschastnikh I, Liu P, Xing A, et al. Visualizing Distributed System Executions. ACM Transactions on Software Engineering and Methodology (TOSEM), 2020, 29(2):1-38.

[3] Merceedi K J, Sabry N A. A Comprehensive Survey for Hadoop Distributed File System. Asian Journal of Computer Science and Information Technology, 2020, 11(2):46-57.

[4] Fabris M, Michieletto G, Cenedese A. A Proximal Point Approach for Distributed System State Estimation. IFAC-PapersOnLine, 2020, 53( 2):2702-2707.

[5] Tabasi M, Asgharian P. Optimal operation of energy storage units in distributed system using social spider optimization algorithm. AIMS Electronics and Electrical Engineering, 2019, 3(4):309-327.

[6] Tabasi M, Asgharian P. Optimal operation of energy storage units in distributed system using social spider optimization algorithm. International Journal on Electrical Engineering and Informatics, 2019, 11(3):564-579.

[7] Patil P, Bagwan T, Kulkarni S, et al. Multi-Attacks Detection in Distributed System using Machine Learning. International Journal Of Computer Sciences And Engineering, 2019, 7(1):601-605.

[8] Arif E. Implementing a Distributed System as a Solution to Problems in the Indosat Cooperative. JURNAL PETIK, 2019, 5(2):24-29.

[9] Widerski M, Gwd M. Solar Power Plant with Distributed System of PV Panels. Przeglad Elektrotechniczny, 2019, 95(2):55-58.

[10] Mingnan, Zhou, Dahai, et al. An Efficient Code-defect Testing Distributed System. IOP Conference Series: Materials Science and Engineering, 2019, 490(4):42038-42038.

[11] Seshadri G, Marutheswar G V. A Novel Architecture for Series-Connected Photovoltaic Distributed System with Enhanced Power Quality Using Type-II Fuzzy Controller. International Journal of Intelligent Engineering and Systems, 2018, 11(4):177-187.

[12] Basinya E A. Distributed system of collecting, processing and analysis of security information events of the enterprise network infrastructure. Bezopasnost Informacionnyh Tehnology, 2018, 25(4):43-52.

[13] Wuning, Tong, Song, et al. Fault-Tolerant Scheduling Algorithm with Re-allocation for Divisible Loads on Homogeneous Distributed System. IAENG Internaitonal journal of computer science, 2018, 45(3):450-457.

[14] Ahad M A, Biswas R. PPS-ADS: A Framework for Privacy-Preserved and Secured Distributed System Architecture for Handling Big Data. International Journal on Advanced Science Engineering and Information Technology, 2018, 8(4):1333-1342.

[15] Chowhan R S, Dayya P. Next Generation in Computing with Agent Oriented Distributed System: Protocols and Features. Oriental Journal of Computer Science & Technology, 2018, 11(2):126-134.

[16] Abhijit A, Sulabha S. Performance Enhancement of Distributed System through Load Balancing and Task Scheduling. International Journal of Computer Applications, 2018, 181(3):20-26.

[17] Fedorov A, Ovseevich A. Asymptotically optimal dry-friction like control for a simplest distributed system. IFAC-PapersOnLine, 2018, 51( 32):87-92.

[18] Hanane C, Battou A, Baz O. Performance Security in Distributed System: Comparative Study. International Journal of Computer Applications, 2018, 179(15):29-33.

[19] Burdonov I B, Kossatchev A S. Directed distributed system: Backtracking problem. Proceedings of the Institute for System Programming of RAS, 2018, 30(2):167-194.