DocumentCode :
894920
Title :
Failure Size Proportional Models and an Analysis of Failure Detection Abilities of Software Testing Strategies
Author :
Zachariah, Babu ; Rattihalli, R.N.
Author_Institution :
Shahu Central Inst. of Bus. Educ. & Res., Kolhapur
Volume :
56
Issue :
2
fYear :
2007
fDate :
6/1/2007 12:00:00 AM
Firstpage :
246
Lastpage :
253
Abstract :
This paper combines two distinct areas of research, namely software reliability growth modeling, and efficacy studies on software testing methods. It begins by proposing two software reliability growth models with a new approach to modeling. These models make the basic assumption that the intensity of failure occurrence during the testing phase of a piece of software is proportional to the s-expected probability of selecting a failure-causing input. The first model represents random testing, and the second model represents partition testing. These models provide the s-expected number of failures over a period, which in turn is used in analyzing the failure detection abilities of testing strategies. The specific areas of investigation are *) conditions that enable partition testing yielding optimal results, and) comparison between partition testing and random testing in terms of efficacy
Keywords :
probability; program testing; software reliability; stochastic processes; Schur function; failure detection ability analysis; failure s-expected probability; failure size proportional model; nonhomogeneous Poisson process; partition testing; random testing; software reliability growth modeling; software testing strategy; Application software; Failure analysis; Helium; Maximum likelihood detection; Sampling methods; Software debugging; Software reliability; Software testing; Statistics; Strontium; Failure regions; NHPP; Schur functions; majorization; partition testing; random testing;
fLanguage :
English
Journal_Title :
Reliability, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9529
Type :
jour
DOI :
10.1109/TR.2007.895310
Filename :
4220800
Link To Document :
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