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Loosely-self-stabilizing Byzantine-Tolerant Binary Consensus for Signature-Free Message-Passing Systems.

, , , and . NETYS, volume 12754 of Lecture Notes in Computer Science, page 36-53. Springer, (2021)

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Brief Announcement: Self-stabilizing Total-Order Broadcast., , and . SSS, volume 13751 of Lecture Notes in Computer Science, page 358-363. Springer, (2022)Static and dynamic performance evaluation of low-cost RTK GPS receivers., , , , and . Intelligent Vehicles Symposium, page 16-19. IEEE, (2016)Practically Stabilizing Virtual Synchrony., , , and . CoRR, (2015)Gulliver: a test-bed for developing, demonstrating and prototyping vehicular systems., , and . MOBIWAC, page 1-8. ACM, (2011)Self-stabilizing TDMA Algorithms for Dynamic Wireless Ad-Hoc Networks., and . ALGOSENSORS, volume 7718 of Lecture Notes in Computer Science, page 105-107. Springer, (2012)Self-stabilizing Uniform Reliable Broadcast., , and . NETYS, volume 12129 of Lecture Notes in Computer Science, page 296-313. Springer, (2020)Self-stabilizing Byzantine Resilient Topology Discovery and Message Delivery - (Extended Abstract)., , and . NETYS, volume 7853 of Lecture Notes in Computer Science, page 42-57. Springer, (2013)Self-Stabilizing Set-Constrained Delivery Broadcast (extended abstract)., , and . ICDCS, page 617-627. IEEE, (2020)A Self-stabilizing Control Plane for Fog Ecosystems., , , , and . UCC, page 13-22. IEEE, (2020)Practically-self-stabilizing virtual synchrony., , , and . J. Comput. Syst. Sci., (2018)