Implementation and analysis of control and forwarding plane for SDN
Aris Cahyadi Risdianto, Eueung Mulyana
Abstract
Aris Cahyadi Risdianto, Eueung Mulyana
Abstract
The Future Internet architecture shall be advanced and flexible with regard to service requirements. The new paradigm, called as Software-Defined Networking (SDN) is an architecture for enabling rapid innovation while hiding much of the complexity on the networking design. SDN is a promising solution for network virtualization that decouples control from forwarding or data plane. SDN can be implemented by combining a programmable forwarding plane (e.g. by using OpenFlow Protocol) and virtualization platform/machines (VMs). In this paper, we evaluate the performance of SDN-based virtual network on different virtualization environment such as operating system based virtualization, hardware-assisted virtualization, and paravirtualization. Both performance, either virtual control plane or forwarding plane will be measured and analyzed.
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The Future Internet architecture shall be advanced and flexible with regard to service requirements. The new paradigm, called as Software-Defined Networking (SDN) is an architecture for enabling rapid innovation while hiding much of the complexity on the networking design. SDN is a promising solution for network virtualization that decouples control from forwarding or data plane. SDN can be implemented by combining a programmable forwarding plane (e.g. by using OpenFlow Protocol) and virtualization platform/machines (VMs). In this paper, we evaluate the performance of SDN-based virtual network on different virtualization environment such as operating system based virtualization, hardware-assisted virtualization, and paravirtualization. Both performance, either virtual control plane or forwarding plane will be measured and analyzed.
Key concepts: OpenFlow, Forwarding plane, Virtualization, Computer science, Network virtualization, Full virtualization, Software-defined networking, Computer network