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handle: 11588/753031 , 20.500.14243/364548
Nous introduisons l'approche DevOpRET pour les tests de fiabilité continus dans DevOps. Il exploite les informations surveillées en fonctionnement pour guider les tests basés sur le profil opérationnel, qui sont conçus dans le cadre de l'étape de test d'acceptation avant chaque prochaine mise en production. Nous passons en revue le pipeline de test et de surveillance envisagé, décrivons l'approche et présentons une étude de cas évaluant l'évolution de l'évaluation de la fiabilité au cours des versions ultérieures.
Presentamos el enfoque DevOpRET para las pruebas de fiabilidad continuas en DevOps. Aprovecha la información monitoreada en funcionamiento para guiar las pruebas basadas en el perfil operativo, que se concibe como parte de la etapa de prueba de aceptación antes de cada siguiente lanzamiento a producción. Repasamos el pipeline de pruebas y monitoreo previsto, describimos el enfoque y presentamos un estudio de caso que evalúa cómo evoluciona la evaluación de confiabilidad en las versiones posteriores.
We introduce the DevOpRET approach for continuous reliability testing in DevOps. It leverages information monitored in operation to guide operational-profile based testing, which is conceived as part of the acceptance testing stage before each next release to production. We overview the envisaged test and monitoring pipeline, describe the approach and present a case-study evaluating how reliability assessment evolves over subsequent releases.
نقدم نهج DevOpRET لاختبار الموثوقية المستمر في DevOps. وهي تستفيد من المعلومات التي تتم مراقبتها أثناء التشغيل لتوجيه الاختبار القائم على الملف التشغيلي، والذي يتم تصوره كجزء من مرحلة اختبار القبول قبل كل إصدار تالي للإنتاج. نلقي نظرة عامة على الاختبار المتوخى وخط أنابيب المراقبة، ونصف النهج ونقدم دراسة حالة لتقييم كيفية تطور تقييم الموثوقية خلال الإصدارات اللاحقة.
FOS: Computer and information sciences, Software Defect Prediction, Software quality, Test strategy, Software reliability, Quantum mechanics, Software Reliability Testing, Reliability engineering, Software testing, Software performance testing, Engineering, Software release life cycle, Quality Gate, Software deployment, Acceptance testing, DevOps, Software construction, Software engineering, Automated Software Testing Techniques, Physics, Software development, Power (physics), Acceptance Test, Computer science, Operating system, Reliability (semiconductor), Software reliability testing, Computer Science, Physical Sciences, Software reliability, Software testing, Acceptance test, Integration testing, Operational Profile, Software Reliability Modeling, Pipeline (software), Software Reliability Assessment and Prediction, Software, Acceptance test, Empirical Studies in Software Engineering, Information Systems
FOS: Computer and information sciences, Software Defect Prediction, Software quality, Test strategy, Software reliability, Quantum mechanics, Software Reliability Testing, Reliability engineering, Software testing, Software performance testing, Engineering, Software release life cycle, Quality Gate, Software deployment, Acceptance testing, DevOps, Software construction, Software engineering, Automated Software Testing Techniques, Physics, Software development, Power (physics), Acceptance Test, Computer science, Operating system, Reliability (semiconductor), Software reliability testing, Computer Science, Physical Sciences, Software reliability, Software testing, Acceptance test, Integration testing, Operational Profile, Software Reliability Modeling, Pipeline (software), Software Reliability Assessment and Prediction, Software, Acceptance test, Empirical Studies in Software Engineering, Information Systems
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