DocumentCode
3195526
Title
Software measurement data analysis using memory-based reasoning
Author
Paul, Raymond A. ; Bastani, Farokh B. ; Challagulla, Venkata U B ; Yen, I-Ling
fYear
2002
fDate
2002
Firstpage
261
Lastpage
267
Abstract
The goal of accurate software measurement data analysis is to increase the understanding and improvement of software development process together with increased product quality and reliability. Several techniques have been proposed to enhance the reliability prediction of software systems using the stored measurement data, but no single method has proved to be completely effective. One of the critical parameters for software prediction systems is the size of the measurement data set, with large data sets providing better reliability estimates. In this paper, we propose a software defect classification method that allows defect data from multiple projects and multiple independent vendors to be combined together to obtain large data sets. We also show that once a sufficient amount of information has been collected, the memory-based reasoning technique can be applied to projects that are not in the analysis set to predict their reliabilities and guide their testing process. Finally, the result of applying this approach to the analysis of defect data generated from fault-injection simulation is presented.
Keywords
data analysis; inference mechanisms; pattern classification; software metrics; software reliability; defect data analysis; fault-injection simulation; memory-based reasoning; product quality; product reliability; software defect classification method; software development process; software measurement data analysis; Computational modeling; Data analysis; Electrical capacitance tomography; Mission critical systems; Size measurement; Software measurement; Software quality; Software reliability; Software systems; Testing;
fLanguage
English
Publisher
ieee
Conference_Titel
Tools with Artificial Intelligence, 2002. (ICTAI 2002). Proceedings. 14th IEEE International Conference on
ISSN
1082-3409
Print_ISBN
0-7695-1849-4
Type
conf
DOI
10.1109/TAI.2002.1180813
Filename
1180813
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