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CaRE: a refinement calculus for requirements engineering based on argumentation theory.

, , , and . Softw. Syst. Model., 21 (6): 2113-2132 (2022)

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Using Argumentation to Explain Ambiguity in Requirements Elicitation Interviews., , , , and . RE, page 51-60. IEEE Computer Society, (2017)A Refinement Calculus for Requirements Engineering Based on Argumentation Theory., , , and . ER, volume 12400 of Lecture Notes in Computer Science, page 3-18. Springer, (2020)CaRE: A Refinement Calculus for Requirements Engineering based on Argumentation Theory (Proofs and Tool)., , , and . (October 2020)Automatic derivation of context descriptions., , and . CogSIMA, page 70-76. IEEE, (2015)Semantic context aware security policy deployment., , , , , and . AsiaCCS, page 251-261. ACM, (2009)CaRE: a refinement calculus for requirements engineering based on argumentation theory., , , and . Softw. Syst. Model., 21 (6): 2113-2132 (2022)CaRE: A Refinement Calculus for Requirements Engineering Based on Argumentation Semantics., , and . RE, page 364-369. IEEE Computer Society, (2018)From Contextual Permission to Dynamic Pre-obligation: An Integrated Approach., , and . ARES, page 70-78. IEEE Computer Society, (2010)A PEP-PDP Architecture to Monitor and Enforce Security Policies in Java Applications., and . ARES, page 367-374. IEEE Computer Society, (2013)Dynamic Analysis of Usage Control Policies., and . SECRYPT, page 88-100. SciTePress, (2014)