Validating User Flows to Protect Software Defined Network Environments

Por um escritor misterioso

Descrição

Software Defined Network is a promising network paradigm which has led to several security threats in SDN applications that involve user flows, switches, and controllers in the network. Threats as spoofing, tampering, information disclosure, Denial of Service, flow table overloading, and so on have been addressed by many researchers. In this paper, we present novel SDN design to solve three security threats: flow table overloading is solved by constructing a star topology-based architecture, unsupervised hashing method mitigates link spoofing attack, and fuzzy classifier combined with L1-ELM running on a neural network for isolating anomaly packets from normal packets. For effective flow migration Discrete-Time Finite-State Markov Chain model is applied. Extensive simulations using OMNeT++ demonstrate the performance of our proposed approach, which is better at preserving holding time than are other state-of-the-art works from the literature.
Validating User Flows to Protect Software Defined Network Environments
Security & Privacy in Software Defined Networks, Issues
Validating User Flows to Protect Software Defined Network Environments
Sensors, Free Full-Text
Validating User Flows to Protect Software Defined Network Environments
Applied Sciences, Free Full-Text
Validating User Flows to Protect Software Defined Network Environments
Ensure Security Across Your Entire Network Using Software Defined
Validating User Flows to Protect Software Defined Network Environments
Sensors, Free Full-Text
Validating User Flows to Protect Software Defined Network Environments
Validating User Flows to Protect Software Defined Network Environments
Validating User Flows to Protect Software Defined Network Environments
Validating User Flows to Protect Software Defined Network Environments
Validating User Flows to Protect Software Defined Network Environments
Recommendations for networking and connectivity - Microsoft Azure
Validating User Flows to Protect Software Defined Network Environments
Towards a reliable firewall for software-defined networks
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