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Study on Web Services Architectural Operations and Performance

Shahanawaj Ahamad1

Section:Research Paper, Product Type: Journal-Paper
Vol.8 , Issue.4 , pp.1-13, Aug-2020


Online published on Aug 31, 2020


Copyright © Shahanawaj Ahamad . This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
 

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IEEE Style Citation: Shahanawaj Ahamad, “Study on Web Services Architectural Operations and Performance,” International Journal of Scientific Research in Computer Science and Engineering, Vol.8, Issue.4, pp.1-13, 2020.

MLA Style Citation: Shahanawaj Ahamad "Study on Web Services Architectural Operations and Performance." International Journal of Scientific Research in Computer Science and Engineering 8.4 (2020): 1-13.

APA Style Citation: Shahanawaj Ahamad, (2020). Study on Web Services Architectural Operations and Performance. International Journal of Scientific Research in Computer Science and Engineering, 8(4), 1-13.

BibTex Style Citation:
@article{Ahamad_2020,
author = {Shahanawaj Ahamad},
title = {Study on Web Services Architectural Operations and Performance},
journal = {International Journal of Scientific Research in Computer Science and Engineering},
issue_date = {8 2020},
volume = {8},
Issue = {4},
month = {8},
year = {2020},
issn = {2347-2693},
pages = {1-13},
url = {https://www.isroset.org/journal/IJSRCSE/full_paper_view.php?paper_id=2000},
publisher = {IJCSE, Indore, INDIA},
}

RIS Style Citation:
TY - JOUR
UR - https://www.isroset.org/journal/IJSRCSE/full_paper_view.php?paper_id=2000
TI - Study on Web Services Architectural Operations and Performance
T2 - International Journal of Scientific Research in Computer Science and Engineering
AU - Shahanawaj Ahamad
PY - 2020
DA - 2020/08/31
PB - IJCSE, Indore, INDIA
SP - 1-13
IS - 4
VL - 8
SN - 2347-2693
ER -

617 Views    505 Downloads    70 Downloads
  
  

Abstract :
The applications of World Wide Web facilitated to get entry to diverse data available in different sources on the Internet. The success of the Web was somehow limiting because of poor discovering processes to find these data over Internet resources. For solving the shortcomings, some modifications were suggested into Web-based systems. The environment of Web was completely changed through these innovative modifications. For implementing interactive Web operations, traditional data has changed from static documents collection to dynamic intelligent data integrated over Web-based systems. The proposed modifications were implemented in the form of a pioneer technology called as Web services (WS). This paper presents a study conducted about Web services interactions, interoperability, architecture, operations and performance. The paper presents about architectural operations of Web services and how they are implemented to make Web services functional. It also highlights performance issues and entails the applied solutions. Web services are the fundamental elements of service-oriented systems to make them interactive and functionable

Key-Words / Index Term :
Web service; Web service architecture; Semantic web service; UDDI; Web service discovery; PRISMA

References :
[1] Tim Berners-Lee, James Hendler, Ora Lassila. ?The semantic web? Scientific American, Vol. 284, no. 5, pp.34-43, 2001.
[2] Michael Stollberg, Cristina Feier, Dumitru Roman, and Dieter Fensel. "Semantic web services-concepts and technology." Language Technology, Ontologies, and the Semantic Web. Kluwer Publishers (to appear), 2006.
[3] L. Z. Varga and ?. H. Sztaki. "Semantic web services description based on web services description." In W3C workshop on frameworks for semantics in web services. 2005.
[4] Omar Ochoa, Miralda Rodney, and Nicholas Del Rio. "Accessing Provenance Records in Semantic Web Services." In 2020 IEEE 14th International Conference on Semantic Computing (ICSC), pp. 141-144. IEEE, 2020.
[5] Olaf Hartig, Christian Bizer, and Johann-Christoph Freytag. "Executing SPARQL queries over the web of linked data." In International Semantic Web Conference, pp. 293-309. Springer, Berlin, Heidelberg, 2009.
[6] John Domingue, Roman Dumitru & Michael Stollberg. Web Service Modeling Ontology (WSMO): an ontology for Semantic Web Services. Position Paper at the W3C Workshop on Frameworks for Semantic Web Services, 2005.
[7] Ralph Kimball, Margy Ross, Warren Thornthwaite, Joy Mundy, and Bob Becker. The data warehouse lifecycle toolkit. John Wiley & Sons, 2008.
[8] Joseph Belfiore, David Campbell, Steve Capps, Steven Cellini, Charles Fitzgerald, Vivek Gundotra, Mark Lucovsky. "Distributed computing services platform." U.S. Patent 6,990,513, issued January 24, 2006.
[9] Riichiro Mizoguchi, Kouji Kozaki, and Yoshinobu Kitamura. "Ontological analyses of roles." In 2012 Federated Conference on Computer Science and Information Systems (FedCSIS), pp. 489-496. IEEE, 2012.
[10] Mueller Wolfgang, Rainer D?mer, and Andreas Gerstlauer. "The formal execution semantics of SpecC." In Proceedings of the 15th international symposium on System Synthesis, pp. 150-155. 2002.
[11] Jesper Jensen. "A systematic literature review of the use of semantic web technologies in formal education." British Journal of Educational Technology Vol. 50, no. 2, pp.505-517, 2019.
[12] Nuruldelmia Idris, Cik Feresa Mohd Foozy, and Palaniappan Shamala. "A Generic Review of Web Technology: DJango and Flask." International Journal of Engineering Information Computing and Application, V.1, no. 1, 2019.
[13] Zhoujie Du and Huaikou Miao. "Research review on web service composition testing." In International Workshop on Structured Object-Oriented Formal Language and Method, pp. 39-51. Springer, Cham, 2018.
[14] Kailash Chander Bhardwaj and R. K. Sharma. "Ontologies: a review of web service discovery techniques." Int. J. Energy Inf. Commun V.7, no. 5,pp.1-12, 2016.
[15] Shailja Sharma, Sheeba Khan. "Analysis of Cloud Security, Performance, Scalability and Availability (SPSA)," International Journal of Scientific Research in Network Security and Communication, Vol.7, Issue.1, pp.13-15, 2019.
[16] SO. OKOLIE, BT. ADETOBA. "Comparative Analysis of Performance Characteristics of well-known Symmetric Key Encryption Algorithms," International Journal of Scientific Research in Network Security and Communication, Vol.4, Issue.3, pp.1-6, 2016
[17] P. Sen, D.Sarddar, S.K. Sinha, R. Pandit. "Web Service Scheduling in Multi-Cloud Environment," International Journal of Computer Sciences and Engineering, Vol.7, Issue.1, pp.30-38, 2019.
[18] Israrul Haque, Ashif Ali. "Organize and Supervise Resources in Multi-account of AWS", International Journal of Computer Sciences and Engineering, Vol.7, Issue.8, pp.260-262, 2019.
[19] G. Amirthayogam, C. Anbu Ananth. "A Survey on Business Policy Violation in Web Service Integration", International Journal of Computer Sciences and Engineering, Vol.7, Issue.6, pp.147-151, 2019.
[20] McInnes, DF Matthew, David Moher, Brett D. Thombs, Trevor A. McGrath, Patrick M. Bossuyt, Tammy Clifford, J?r?mie F. Cohen. "Preferred reporting items for a systematic review and meta-analysis of diagnostic test accuracy studies: the PRISMA-DTA statement." Jama, V.319, no. 4,pp.388-396, 2018.
[21] Otzen, Tamara, Carlos Manterola, Mirian Mora, Guissella Quiroz, Paulina Salazar, and Nayely Garc?a. "Statements, Recommendations, Proposals, Guidelines, Checklists and Scales Available for Reporting Results in Biomedical Research and Quality of Conduct. A Systematic Review." International Journal of Morphology, V.38, no. 3, 2020.
[22] Liberati, Alessandro & Altman, Douglas & Tetzlaff, Jennifer & Mulrow, Cynthia & G?tzsche, Peter & Ioannidis, John & Clarke, Mike & Devereaux, P.J. & Kleijnen, Jos & Moher, David. The PRISMA Statement for Reporting Systematic Reviews and Meta-Analyses of Studies That Evaluate Health Care Interventions: Explanation and Elaboration. Journal of clinical epidemiology. V.62. e1-34. 10.1016/j.jclinepi.2009.06.006, 2009.
[23] Hamid, Sawsan Ali, Rana Alauldeen Abdalrahman, Inam Abdullah Lafta, and Israa Al Barazanchi. "Web Services Architecture Model to Support Distributed Systems." Journal of Southwest Jiaotong University, V.54, no. 6, 2019.
[24] D. Zuquim Guimaraes Garcia and M. Beatriz Felgar de Toledo. "A Fault Tolerant Web Service Architecture," 2007 Latin American Web Conference (LA-WEB 2007), Santiago, pp. 42-49, 2007, doi: 10.1109/LA-Web.2007.16.
[25] Michael Papazoglou. Web services: Principles and Technology. Pearson Education, 2008.
[26] Jitender Tanwar, Sanjay Kumar Sharma, and Mandeep Mittal. "Secure Framework for Web Services Communication." In 2018 International Conference on Automation and Computational Engineering (ICACE), pp. 187-190. IEEE, 2018.
[27] Zaiwen Feng, Rong Peng, Bing Li, Keqing He, Chong Wang, Jian Wang, and Cheng Zeng. "A service registry meta-model framework for interoperability." In 2011 Tenth International Symposium on Autonomous Decentralized Systems, pp. 389-398. IEEE, 2011.
[28] Ali Shaikh Ali, Omer F. Rana, Rashid Al-Ali, and David W. Walker. "UDDIe: An extended registry for web services." In 2003 Symposium on Applications and the Internet Workshops, 2003. Proceedings., pp. 85-89. IEEE, 2003.
[29] Sandeep Chatterjee, James Webber. Developing enterprise web services: an architect`s guide. Prentice Hall Professional, 2004.
[30] Rahul Katarya, Om Prakash Verma. "An effective web page recommender system with fuzzy c-mean clustering." Multimedia Tools and Applications V. 76, no. 20, pp.21481-21496, 2017.
[31] Feng Yongxin, and Qin Li. "The distributed UDDI system model based on service oriented architecture." In 2016 7th IEEE International Conference on Software Engineering and Service Science (ICSESS), pp. 585-589. IEEE, 2016.
[32] Jiamao Liu, N. Gu, Y. Zong, Z. Ding, S. Zhang and Q. Zhang. "Service Registration and Discovery in a Domain-Oriented UDDI Registry" The Fifth International Conference on Computer and Information Technology (CIT`05), Shanghai, pp. 276-283, doi: 10.1109/CIT.2005.165, 2005.
[33] S. Bharathan, Chandrasekharan Rajendran, and R. P. Sundarraj. "Penalty based mathematical models for web service composition in a geo-distributed cloud environment." In 2017 IEEE International Conference on Web Services (ICWS), pp. 886-889. IEEE, 2017.
[34] Sheeba Adlin, S. Padmakala, and C. A. Subasini. "Ontology based Semantic Description and Registration of Mathematical Web Services." In 2019 Third International conference on I-SMAC (IoT in Social, Mobile, Analytics and Cloud)(I-SMAC), pp. 521-525. IEEE, 2019.
[35] Schahram Dustdar, Wolfgang Schreiner. A survey on Web services composition. IJWGS. V.1., pp.1-30. 10.1504/IJWGS.2005.007545, 2005.
[36] Alexander Anatolievich Litvinov. "ON BUSINESS LOGIC LAYER DESIGN AND ARCHITECTURE." System technologies V.1, no. 126, pp.86-95, 2020.
[37] Letha Hughes Etzkorn. Introduction to Middleware: Web Services, Object Components, and Cloud Computing. CRC Press, 2017.
[38] Sabrina Mehdi, Nacer Eddine Zarour. "Composition of web services using multi agent based planning with high availability of web services." In 2016 2nd International Conference on Advanced Technologies for Signal and Image Processing (ATSIP), pp. 10-15. IEEE, 2016
[39] Martin Garriga, Flores, Andr?s Pablo & Cechich, Alejandra & Zunino, Alejandro. Web Services Composition Mechanisms: A Review. IETE Technical Review. 32. 1-8. 10.1080/02564602.2015.1019942, 2015.
[40] Y. Li, Y. Li, T. Hu and Z. Lv. "An automatic semantic Web service composition method based on ontology," 2015 IEEE/ACIS 14th International Conference on Computer and Information Science (ICIS), Las Vegas, NV, pp. 563-566, doi: 10.1109/ICIS.2015.7166656, 2015.
[41] N. Adadi, M. Berrada, D. Chenouni and M. Halim. "AWSCPM: A Framework for Automation of Web Services Composition Processes," 7th Mediterranean Congress of Telecommunications (CMT), F?s, Morocco, 2019, pp. 1-4, doi: 10.1109/CMT.2019.8931389, 2019.
[42] Q. Wu and Y. Wang. "Research on the Web Service Composition and Application Based on the Service Quality," 2015 7th International Conference on Intelligent Human-Machine Systems and Cybernetics, Hangzhou, 2015, pp. 97-100, doi: 10.1109/IHMSC.2015.144, 2015.
[43] M. Jiang and X. Zhang. "A Requirement-Driven Web Service Composition Modeling Framework," International Conference on Computer Science and Applications (CSA), Wuhan, 2015, pp. 293-297, doi: 10.1109/CSA.2015.48, 2015.
[44] Y. Lei, Z. Jiantao, W. Fengqi, G. Yongqiang and Y. Bo. "Web Service Composition Based on Reinforcement Learning," 2015 IEEE International Conference on Web Services, New York, NY, pp. 731-734, doi: 10.1109/ICWS.2015.103, 2015.
[45] Anna Palii, Rina Novogrudska. "Web-services Selection based on fuzzy preference relations." In 2017 International Conference on Information and Telecommunication Technologies and Radio Electronics (UkrMiCo), pp. 1-4. IEEE, 2017.
[46] ZhiJun Ding, JunJun Liu, YouQing Sun, ChangJun Jiang, and MengChu Zhou. "A transaction and QoS-aware service selection approach based on genetic algorithm." IEEE Transactions on Systems, Man, and Cybernetics: Systems, V.45, no. 7, pp.1035-1046, 2015.
[47] Yilong Yang, Wei Ke, Weiru Wang, and Yongxin Zhao. "Deep Learning for Web Services Classification." In 2019 IEEE International Conference on Web Services (ICWS), pp. 440-442. IEEE, 2019.
[48] Medha Chippa, Aishwarya Priyadarshini, and Ramakanta Mohanty. "Application of Machine Learning Techniques to Classify Web Services." In 2019 IEEE International Conference on Intelligent Techniques in Control, Optimization and Signal Processing (INCOS), pp. 1-7. IEEE, 2019.
[49] Shailja Sharma, Jagdeep Singh Lather, and Mayank Dave. "Semantic approach for Web service classification using machine learning and measures of semantic relatedness." Service Oriented Computing and Applications, V.10, no. 3, pp.221-231, 2016.
[50] Fuxin Chen, Shijin Yuan, Bin Mu. "User-QoS-based web service clustering for QoS prediction." In 2015 IEEE international conference on web services, pp. 583-590. IEEE, 2015.
[51] Rupasingha AHM Rupasingha, Incheon Paik, Banage TGS Kumara, and TH Akila S. Siriweera. "Domain-aware web service clustering based on ontology generation by text mining." In 2016 IEEE 7th Annual Information Technology, Electronics and Mobile Communication Conference (IEMCON), pp. 1-7. IEEE, 2016.
[52] Roman Mora, Sa?l Santill?n-P?rez, Maricela Bravo. "Web Services Clustering Using a Bio-inspired Algorithm." In 2015 26th International Workshop on Database and Expert Systems Applications (DEXA), pp. 191-194. IEEE, 2015.
[53] Orhan Engin, Abdullah G??l?. "A new hybrid ant colony optimization algorithm for solving the no-wait flow shop scheduling problems." Applied Soft Computing,V. 72, pp.166-176, 2018.
[54] John Garofalakis, Yannis Panagis, Evangelos Sakkopoulos, and Athanasios Tsakalidis. "Web service discovery mechanisms: Looking for a needle in a haystack." In International Workshop on Web Engineering, vol. 38, p. 25. 2004.
[55] ABDELLI Djallel Eddine and BOUYAKOUB Faycal M`hamed. "Improved Multicriteria Ranking based web service Discovery approach." In 2018 3rd International Conference on Pattern Analysis and Intelligent Systems (PAIS), pp. 1-6. IEEE, 2018.
[56] Wala Ben Messaoud, Khaled Ghedira, and Youssef Ben Halima. "Web service discovery based on behavioral aspects." In 2015 2nd World Symposium on Web Applications and Networking (WSWAN), pp. 1-5. IEEE, 2015.
[57] Rashmi Phalnikar, Pradnya A. Khutade. "Survey of QoS based web service discovery." In 2012 World Congress on Information and Communication Technologies, pp. 657-661. IEEE, 2012.
[58] Ch Ram Mohan Reddy, RV Raghavendra Rao. "QoS of Web service: Survey on performance and scalability." Computer Science and Information Technology, V. 3, no. 9, pp.65-73, 2013.
[59] Eyhab Al-Masri, Qusay H. Mahmoud. "Toward quality-driven web service discovery." IT Professional, V. 10, no. 3, pp.24-28, 2008.
[60] Xumin Liu, Arpeet Kale, Javed Wasani, Chen Ding, and Qi Yu. "Extracting, ranking, and evaluating quality features of Web services through user review sentiment analysis." In 2015 IEEE International Conference on Web Services, pp. 153-160. IEEE, 2015.
[61] Chen Wu, Weiwei Qiu, Zibin Zheng, Xinyu Wang, and Xiaohu Yang. "Qos prediction of web services based on two-phase k-means clustering." In 2015 IEEE international conference on web services, pp. 161-168. IEEE, 2015.
[62] Eckwijai Maythaisong and Wararat Songpan. "Hybrid testing approach for web services composition using genetic algorithm." In 2016 IEEE Conference on e-Learning, e-Management and e-Services (IC3e), pp. 188-193. IEEE, 2016.
[63] Yanjun Shu, Zhibo Wu, Hongwei Liu, and Yixiang Gao. "A simulation-based reliability analysis approach of the fault-tolerant web services." In 2016 7th International Conference on Intelligent Systems, Modelling and Simulation (ISMS), pp. 125-129. IEEE, 2016.
[64] Mohammad Javad Amiri and Mahnaz Koupaee. "Quality improvement in web services using function replication." In 2016 Second International Conference on Web Research (ICWR), pp. 72-77. IEEE, 2016.

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