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MORPH: An Adaptive Framework for Efficient and Byzantine Fault-Tolerant SDN Control Plane.

, , and . IEEE J. Sel. Areas Commun., 36 (10): 2158-2174 (2018)

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P4BFT: Hardware-Accelerated Byzantine-Resilient Network Control Plane., , , and . GLOBECOM, page 1-7. IEEE, (2019)Decoupling of Distributed Consensus, Failure Detection and Agreement in SDN Control Plane., and . Networking, page 467-475. IEEE, (2020)BFT Protocols for Heterogeneous Resource Allocations in Distributed SDN Control Plane., and . ICC, page 1-7. IEEE, (2019)MORPH: An Adaptive Framework for Efficient and Byzantine Fault-Tolerant SDN Control Plane., , and . IEEE J. Sel. Areas Commun., 36 (10): 2158-2174 (2018)Rule-Based Translation of Application-Level QoS Constraints into SDN Configurations for the IoT., , , and . EuCNC, page 432-437. IEEE, (2019)Impact of Adaptive Consistency on Distributed SDN Applications: An Empirical Study., and . IEEE J. Sel. Areas Commun., 36 (12): 2702-2715 (2018)Analysis and Design of Distributed Control Plane Mechanisms in SDN-based Industrial Networks (Analyse und Design der Mechanismen für Verteilte Netzsteuerungsebene im Industriellen SDN). Technical University of Munich, Germany, (2021)Mining Software Repositories for Predictive Modelling of Defects in SDN Controller., , , and . IM, page 80-88. IFIP, (2019)SEMIoTICS Architectural Framework: End-to-end Security, Connectivity and Interoperability for Industrial IoT., , , , , , , , , and 6 other author(s). GIoTS, page 1-6. IEEE, (2019)Automated Bootstrapping of A Fault-Resilient In-Band Control Plane., , , and . SOSR, page 1-13. ACM, (2020)