B-DAC: A Decentralized Access Control Framework on Northbound Interface for Securing SDN Using Blockchain
Phan The Duy, Hien Do Hoang, Do Thi Thu Hien, Anh Gia-Tuan Nguyen,, Van-Hau Pham

TL;DR
This paper introduces B-DAC, a blockchain-based decentralized access control framework designed to secure the Northbound interface of SDN, preventing attacks and unauthorized access while ensuring data integrity and availability.
Contribution
The paper presents a novel blockchain-based framework for decentralized authentication and fine-grained access control in SDN's Northbound interface, addressing security vulnerabilities.
Findings
B-DAC effectively enforces strict access policies.
Prototype demonstrates improved security and performance.
Framework prevents over-privileged activities.
Abstract
Software-Defined Network (SDN) is a new arising terminology of network architecture with outstanding features of orchestration by decoupling the control plane and the data plane in each network element. Even though it brings several benefits, SDN is vulnerable to a diversity of attacks. Abusing the single point of failure in the SDN controller component, hackers can shut down all network operations. More specifics, a malicious OpenFlow application can access to SDN controller to carry out harmful actions without any limitation owing to the lack of the access control mechanism as a standard in the Northbound. The sensitive information about the whole network such as network topology, flow information, and statistics can be gathered and leaked out. Even worse, the entire network can be taken over by the compromised controller. Hence, it is vital to build a scheme of access control for…
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