Abstract:
In this paper, two problems of optimal resource allocation to modules during testing phase are studied: (1) maximization of the number of faults removed when the amount o...Show MoreMetadata
Abstract:
In this paper, two problems of optimal resource allocation to modules during testing phase are studied: (1) maximization of the number of faults removed when the amount of testing-effort is fixed, and (2) maximization of the number of faults removed satisfying a certain percentage of initial faults to be removed with a fixed amount of testing-effort. These optimization problems are formulated as nonlinear programming problems (NLPP), which are modeled by a software reliability growth model based on a non-homogeneous Poisson process which incorporated the exponentiated Weibull testing-effort functions. A solution procedure is then developed using dynamic programming technique to solve the NLPPs. Finally, numerical examples illustrate the solution procedure and the results are compared with that of Kapur et al.[1].
Date of Conference: 12-14 December 2008
Date Added to IEEE Xplore: 22 December 2008
Print ISBN:978-0-7695-3336-0
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- IEEE Keywords
- Index Terms
- Resource Allocation ,
- Dynamic Programming ,
- Optimal Allocation ,
- Optimal Resource Allocation ,
- Dynamic Programming Approach ,
- Software Reliability ,
- Software Reliability Growth Models ,
- Optimization Problem ,
- Numerical Examples ,
- Test Phase ,
- Poisson Process ,
- Solution Procedure ,
- Resource Allocation Problem ,
- Nonlinear Programming Problem ,
- Percentage Of Defects ,
- Error Detection ,
- Recurrence Relation
- Author Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Resource Allocation ,
- Dynamic Programming ,
- Optimal Allocation ,
- Optimal Resource Allocation ,
- Dynamic Programming Approach ,
- Software Reliability ,
- Software Reliability Growth Models ,
- Optimization Problem ,
- Numerical Examples ,
- Test Phase ,
- Poisson Process ,
- Solution Procedure ,
- Resource Allocation Problem ,
- Nonlinear Programming Problem ,
- Percentage Of Defects ,
- Error Detection ,
- Recurrence Relation
- Author Keywords