Welcome to Scholar Publishing Group

Distributed Processing System, 2021, 2(4); doi: 10.38007/DPS.2021.020402.

Development Method and Support Tools of Distributed System Based on Web Service

Author(s)

Hashash Mostafa

Corresponding Author:
Hashash Mostafa
Affiliation(s)

Siksha O Anusandhan Deemed Univ, Inst Tech Educ & Res, Dept Elect & Elect Engn, Bhubaneswar 751030, Odisha, India

Abstract

With the advent of the Internet era, the system design concept continues to promote the development of software technology, and the distributed system development technology has made a qualitative leap, which improves the productivity of developers and provides convenience for producers. The purpose of this paper is to research distributed system development methods and supporting tools based on Web Services. The sub-process of Web Service component development and the deployment of Aspire Extension platform are analyzed. The supporting tools required by the distributed system of Web Service application development are presented. Taking the Haitao distributed system as an example, the implementation of the function design of the extension platform and each development process is verified, and through the performance analysis of whether the Haitao extension instance developed based on the extension platform is developed, the Haitao in two modes is analyzed. The difference between the browser and the browser memory of the extension is the starting point, and the performance improvement of the extension application by the extension development platform is verified and expounded.

Keywords

Web Service Application, Distributed System, Development Method, Support Tool

Cite This Paper

Hashash Mostafa. Development Method and Support Tools of Distributed System Based on Web Service. Distributed Processing System (2021), Vol. 2, Issue 4: 10-17. https://doi.org/10.38007/DPS.2021.020402.

References

[1] Weisenburger P, Khler M, Salvaneschi G. Distributed system development with ScalaLoci. Proceedings of the ACM on Programming Languages, 2018, 2(OOPSLA):1-30. https://doi.org/10.1145/3276499

[2] Salih H S, Egorov S Y. Development Of A Monitoring System For Scheduled Works At Distributed Facilities. Vestnik Tambovskogo gosudarstvennogo tehnicheskogo universiteta, 2020, 26(1):056-063.

[3] MC Pérez-Pirela, JP García-Sandoval, Camacho O. Development of a Simplified Model for a Distributed-Parameter Heat Exchange System for Thermodynamic Principles-Based Control Purposes. IFAC-PapersOnLine, 2018, 51( 13):396-401. https://doi.org/10.1016/j.ifacol.2018.07.311

[4] Kim D W, Park H J. Development of Distributed Control System for Interpreter-based Educational Robot. Journal of The Korean Society of Manufacturing Technology Engineers, 2020, 29(3):235-242.

[5] Mishra R, Banerjee U, Sekhar T, et al. Development and implementation of control of stand-alone PMSG-based distributed energy system with variation in input and output parameters. Electric Power Applications, IET, 2019, 13(10):1497-1506. https://doi.org/10.1049/iet-epa.2018.5882

[6] Altsybeyev V, Kozynchenko V. Development of the distributed information system for the cooperative work under the design and optimizationof charged particle accelerators. Cybernetics and Physics, 2019(Volume 8, 2019, Number 4):195-198.

[7] Kane M B, Lynch J P, Scruggs J. Development of a Scalable Distributed Model Predictive Control System for Hydronic Networks with Bilinear and Hybrid Dynamics. Journal of Computing in Civil Engineering, 2018, 32(5):04018038.1-04018038.10.

[8] Starikov A, Meshkov D. Multi-Agent Approach To The Development Of Management System Of The Process Of The Distributed Furniture Design. Actual directions of scientific researches of the XXI century theory and practice, 2020, 8(1):238-243.

[9] M Dülger. Development Of The State Machine For The Distributed Elevator Control System Implementing Controller Area Network (Can). Global Journal of Engineering Science and Research Management, 2019, 2(6):39-51.

[10] Evdokimenkov V N, Kozorez D A, Krasilshchikov M N. Development of pre-flight planning algorithms for the functional-program prototype of a distributed intellectual control system of unmanned flying vehicle groups. INCAS BULLETIN, 2019, 11(S):75-88.

[11] Bahri L, Carminati B, Ferrari E. Privacy in Web Service Transactions: A Tale of More than a Decade of Work. IEEE Transactions on Services Computing, 2018, 11(2):448-465. https://doi.org/10.1109/TSC.2017.2711019

[12] Kovalets I V, Maistrenko S Y, Khalchenkov A, et al. Adaptation of the Web-Service of Air Pollution Forecasting for Operation within Cloud Computing Platform of the Ukrainian National Grid Infrastructure. Science and Innovation, 2021, 17(1):78-88. https://doi.org/10.15407/scine17.01.078

[13] Swetha N G, Karpagam G R. GPU enabled Improved Reference Ideal Method (I-RIM) for Web Service Selection. International Journal of Information Technology & Decision Making, 2021, 21(03):855-884.

[14] Polska O V, Kudermetov R K, Shkarupylo V V. An Approach Web Service Selection By Quality Criteria Based On Sensitivity Analysis Of Mcdm Methods. Radio Electronics Computer Science Control, 2021(2):133-143.

[15] Tedyyana A, Fauzi M, Ratnawati F. Revamp Keamanan Web Service Milik PT XYZ Menggunakan REST API. Digital Zone Jurnal Teknologi Informasi dan Komunikasi, 2021, 12(1):1-10.

[16] Feddaoui I, Felhi F, Algarni F, et al. QoS-Based Collaborative Filtering for Web Service Mining. International Journal of Web Portals, 2021, 13(1):40-61. https://doi.org/10.4018/IJWP.2021010103

[17] Meshcheryakova A A. Distance Learning In Informatics Lessons Using The Online Test Pad Web Service. Informatics in School, 2020, 1(7):47-56.

[18] Lakshman A. Web Service Recommendation Method of Hybrid Item-Memory based Collaborative Filtering for Scalability of Data. Journal of Advanced Research in Dynamical and Control Systems, 2020, 12(7):714-720. https://doi.org/10.5373/JARDCS/V12I7/20202054