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Prohlédněte si vybrané metody vedle sebe; řádky, které se liší, jsou zvýrazněny.

Model pro predikci defektů×Analýza pokrytí kódu×
OborSoftwarové inženýrstvíSoftwarové inženýrství
RodinaProcess / pipelineProcess / pipeline
Rok vzniku20051988
TvůrceThomas Ostrand, Elaine Weyuker, Robert BellTest Coverage Community
Typmachine learning modelmeasurement and analysis
Původní zdrojOstrand, T. J., Weyuker, E. J., & Bell, R. M. (2005). Predicting the location and number of faults in large software systems. IEEE Transactions on Software Engineering, 31(4), 340–355. DOI ↗Zhu, H., Hall, P. A. V., & May, J. H. R. (1997). Software unit test coverage and adequacy. ACM Computing Surveys, 29(4), 366–427. DOI ↗
Další názvyfault prediction, bug prediction, defect classificationcoverage metrics, test coverage, instrumentation-based measurement
Příbuzné44
ShrnutíDefect prediction models forecast the likelihood of software faults in code modules using statistical or machine learning approaches. Pioneered by Ostrand, Weyuker, and Bell (2005), these models correlate code metrics (complexity, churn, coupling) with historical defect data to identify high-risk components. Organizations use predictions to allocate testing resources, guide code review, and prioritize refactoring.Code coverage analysis measures the extent to which source code is executed by a test suite, quantifying which lines, branches, or paths are exercised. Tools instrument code to track execution, reporting coverage percentages and identifying untested regions. Coverage analysis guides test creation, detects dead code, and validates test adequacy in quality assurance processes.
ScholarGateDatová sada
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  1. v1
  2. 3 Zdroje
  3. PUBLISHED

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ScholarGatePorovnat metody: Defect Prediction Model · Code Coverage Analysis. Získáno 2026-06-15 z https://scholargate.app/cs/compare