Depth-Optimized Delay-Aware Tree (DO-DAT) for Virtual Network Function Placement
Dimitrios Michael Manias, Hassan Hawilo, Manar Jammal, Abdallah A. Shami · IEEE Networking Letters · 2020
With the constant increase in demand for data connectivity, network service providers are faced with the task of reducing their capital and operational expenses while ensuring continual improvements to network performance. Although Network Function Virtualization (NFV) has been identified as a solution, several challenges must be addressed to ensure its feasibility. In this letter, we present a machine learning-based solution to the Virtual Network Function (VNF) placement problem. This letter proposes the Depth-Optimized Delay-Aware Tree (DO-DAT) model by using the particle swarm optimization technique to optimize decision tree hyper-parameters. Using the Evolved Packet Core (EPC) as a use case, we evaluate the performance of the model and compare it to a previously proposed model and a heuristic placement strategy.