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ECDSA-Compatible Privacy Preserving Signature With Designated Verifier.

, , and . CSP, page 84-89. IEEE, (2021)

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A Comprehensive Exploration of Challenges in Architecture-Based Reliability Estimation., , , , and . WADS, volume 5835 of Lecture Notes in Computer Science, page 202-227. Springer, (2008)SHARP: a scalable approach to architecture-level reliability prediction of concurrent systems., , and . QUOVADIS@ICSE, page 1-8. ACM, (2010)A Study of Web Services Performance Prediction: A Client's Perspective., , and . MASCOTS, page 75-84. IEEE Computer Society, (2011)Architecture-level reliability prediction of concurrent systems., , , and . ICPE, page 121-132. ACM, (2012)A Fault Tolerance Protocol for Uploads: Design and Evaluation., , , and . ISPA, volume 3358 of Lecture Notes in Computer Science, page 136-145. Springer, (2004)Scalable and Secure Data Collection: Fault Tolerance Considerations., , , and . DG.O, Digital Government Research Center, (2004)Data assignment in fault tolerant uploads for digital government applications: a genetic algorithms approach., , and . DG.O, volume 89 of ACM International Conference Proceeding Series, page 29-38. Digital Government Research Center, (2005)ECDSA-Compatible Privacy Preserving Signature With Designated Verifier., , and . CSP, page 84-89. IEEE, (2021)Identifying and Addressing Uncertainty in Architecture-Level Software Reliability Modeling., , , and . IPDPS, page 1-6. IEEE, (2007)Early prediction of software component reliability., , , and . ICSE, page 111-120. ACM, (2008)