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2018 | OriginalPaper | Chapter

Software Effort Estimation Using Grey Relational Analysis with K-Means Clustering

Authors : M. Padmaja, D. Haritha

Published in: Information Systems Design and Intelligent Applications

Publisher: Springer Singapore

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Abstract

Software effort estimation is described as a method of predicting the amount of person/months ratio to build a new system. Effort estimation is calculated in terms of persons involved per month for the completion of a project. During the launch of any new project into the market or in industry, the cost and effort of a new project is estimated. In this context, a numerous models have been developed to measure the effort and cost. This becomes a challenging task for the industries to predict the effort. In the present paper, a novel method is proposed called the Grey Relational Analysis (GRA) for estimating the effort of a particular project by considering the most influenced parameters. To achieve the same, one-way ANOVA and Pearson correlation methods are combined. Experimental results obtained with the help of clustering and without clustering by using the proposed method on the data set are presented. An attempt has been made to show the minimum error rate by using GRA for predicting the effort estimation on COCOMO 81 data set and clustered data set. The proposed method demonstrated better results compared to the traditional techniques used for estimation. The efficiency of the proposed system is illustrated through experimental results.

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Literature
1.
go back to reference M. Jorgensen, “Contrasting ideal and realistic conditions as a means to improve judgment-based software development effort estimation”, Information and Software Technology, Vol. 53, Issue 12, pp. 1382–1390, Elsevier B.V, December 2011. M. Jorgensen, “Contrasting ideal and realistic conditions as a means to improve judgment-based software development effort estimation”, Information and Software Technology, Vol. 53, Issue 12, pp. 1382–1390, Elsevier B.V, December 2011.
2.
go back to reference Martin Shepperd, Chris Schofield and Barbara Kitchenham “Effort Estimation using Analogy”, IEEE, 2009. Martin Shepperd, Chris Schofield and Barbara Kitchenham “Effort Estimation using Analogy”, IEEE, 2009.
3.
go back to reference Deng. J “Introduction to grey system”, Journal of Grey System, Vol. 1 No. 1, pp. 1–24. 1989. Deng. J “Introduction to grey system”, Journal of Grey System, Vol. 1 No. 1, pp. 1–24. 1989.
4.
go back to reference Qinbao Song, Martin Shepperd and Carolyn Mair, “Using Grey Relational Analysis to Predict Software Effort with Small Data Sets”, 11th IEEE International Software Metrics Symposium—METRICS 2005. Qinbao Song, Martin Shepperd and Carolyn Mair, “Using Grey Relational Analysis to Predict Software Effort with Small Data Sets”, 11th IEEE International Software Metrics Symposium—METRICS 2005.
5.
go back to reference Sun-Jen Huang, Nan-Hsing Chiu and Li-Wei Chen, “Integration of the grey relational analysis with genetic algorithm for software effort estimation”, European Journal of Operational Research, pp 898–909, 2008. Sun-Jen Huang, Nan-Hsing Chiu and Li-Wei Chen, “Integration of the grey relational analysis with genetic algorithm for software effort estimation”, European Journal of Operational Research, pp 898–909, 2008.
6.
go back to reference M. Padmaja, Dr D. Haritha, “Software Effort Estimation using Grey Relational Analysis”, MECS in International Journal of Information Technology and Computer Science, 2017, Vol. 9, No. 5, May 2017. M. Padmaja, Dr D. Haritha, “Software Effort Estimation using Grey Relational Analysis”, MECS in International Journal of Information Technology and Computer Science, 2017, Vol. 9, No. 5, May 2017.
7.
go back to reference Chao-Jung Hsu and Chin-Yu Huang, “Improving Effort Estimation Accuracy by Weighted Grey Relational Analysis During Software Development” 14th Asia-Pacific Software Engineering Conference, IEEE, 2007. Chao-Jung Hsu and Chin-Yu Huang, “Improving Effort Estimation Accuracy by Weighted Grey Relational Analysis During Software Development” 14th Asia-Pacific Software Engineering Conference, IEEE, 2007.
8.
go back to reference Chao-Jung Hsu and Chin-Yu Huang, “Comparison of weighted grey relational analysis for software effort estimation”, Software Qual J, Springer Science + Business Media, LLC 2010. Chao-Jung Hsu and Chin-Yu Huang, “Comparison of weighted grey relational analysis for software effort estimation”, Software Qual J, Springer Science + Business Media, LLC 2010.
9.
go back to reference Mohammad Azzeh & Daniel Neagu & Peter I. Cowling, “Fuzzy grey relational analysis for software effort estimation”, Empir Software Eng, 15, pp 60–90, Springer, 2010. Mohammad Azzeh & Daniel Neagu & Peter I. Cowling, “Fuzzy grey relational analysis for software effort estimation”, Empir Software Eng, 15, pp 60–90, Springer, 2010.
10.
go back to reference Jin-Cherng Lin, Yueh-Ting Lin, Han-Yuan Tzeng and Yan-Chin Wang, “Using Computing Intelligence Techniques to Estimate Software Effort”, International Journal of Software Engineering & Applications (IJSEA), Vol. 4, No. 1, January 2013. Jin-Cherng Lin, Yueh-Ting Lin, Han-Yuan Tzeng and Yan-Chin Wang, “Using Computing Intelligence Techniques to Estimate Software Effort”, International Journal of Software Engineering & Applications (IJSEA), Vol. 4, No. 1, January 2013.
11.
go back to reference Jin-Cherng Lin, Han-Yuan Tzeng, “Applying Particle Swarm Optimization to Estimate Software Effort by Multiple Factors Software Project Clustering”, IEEE, 2010. Jin-Cherng Lin, Han-Yuan Tzeng, “Applying Particle Swarm Optimization to Estimate Software Effort by Multiple Factors Software Project Clustering”, IEEE, 2010.
12.
go back to reference G. Chamundeswari, Prof. G. Pardasaradhi Varma, Prof. Ch. Satyanarayana, “An Experimental Analysis of K-means Using Matlab”, International Journal of Engineering Research & Technology (IJERT), Vol. 1 Issue 5, July 2012. G. Chamundeswari, Prof. G. Pardasaradhi Varma, Prof. Ch. Satyanarayana, “An Experimental Analysis of K-means Using Matlab”, International Journal of Engineering Research & Technology (IJERT), Vol. 1 Issue 5, July 2012.
Metadata
Title
Software Effort Estimation Using Grey Relational Analysis with K-Means Clustering
Authors
M. Padmaja
D. Haritha
Copyright Year
2018
Publisher
Springer Singapore
DOI
https://doi.org/10.1007/978-981-10-7512-4_92

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