DocumentCode :
600265
Title :
A hybrid release planning method and its empirical justification
Author :
Przepiora, M. ; Karimpour, Reza ; Ruhe, Guenther
Author_Institution :
Univ. of Calgary, Calgary, AB, Canada
fYear :
2012
fDate :
20-21 Sept. 2012
Firstpage :
115
Lastpage :
118
Abstract :
Background: The use of Constraint Programming (CP) has been proposed by Regnell and Kuchcinski to model and solve the Release Planning Problem. However, they did not empirically demonstrate the advantages and disadvantages of CP over existing release planning methods. Aims: The aims of this paper are (1) to perform a comparative analysis between CP and ReleasePlanner (RP), an existing release planning tool, and (2) to suggest a hybrid approach combining the strengths of each individual method. Method: (1) An empirical evaluation was performed, evaluating the efficiency and effectiveness of the individual methods to justify their hybrid usage. (2) A proof of concept for a hybrid release planning method is introduced, and a real-world dataset including more than 600 features was solved using the hybrid method to provide evidence of its effectiveness. Results: (1) Use of RP was found to be more efficient and effective than CP. However, CP is preferred when advanced planning objectives and constraints exist. (2) The hybrid method (RP&CP) greatly outperformed the individual approach (CP), increasing computational solution quality by 87%. Conclusion: We were able to increase the expressiveness and thus applicability of an existing, efficient and effective release planning method. We presented evidence for its computational effectiveness, but more work is needed to make this result significant.
Keywords :
constraint handling; software development management; CP; RP; ReleasePlanner; computational solution quality; constraint programming; empirical justification; hybrid release planning method; software development management; Educational institutions; Planning; Programming; Search problems; Software; Software engineering; Systematics; Release planning; efficiency of use; hybrid algorithm; performance evaluation; user satisfaction;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Empirical Software Engineering and Measurement (ESEM), 2012 ACM-IEEE International Symposium on
Conference_Location :
Lund
ISSN :
1938-6451
Print_ISBN :
978-1-4503-1056-7
Electronic_ISBN :
1938-6451
Type :
conf
DOI :
10.1145/2372251.2372271
Filename :
6475405
Link To Document :
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