A new cache-aware routing scheme for ICN that takes into account the information about the locations of caches in the network and constructs delivery paths for efficient content dissemination and is agnostic of the cached contents.
This paper studies one of the most important Bloom-filter based ICN forwarding mechanisms and proposes some enhancements to this mechanism, which aim at increasing its resistance to brute-force attacks.
Bander A. Alzahrani, V. Vassilakis, M. Reed· 0 citations
This paper focuses on traffic management for interactive multimedia services accessed by a mobile user by means of dynamic migration of a Virtual Machine, and helps alleviate the increased network costs introduced by dynamic migrations driven by Quality of Service parameters and may result in increased network traffic for the benefit of improved QoS.
Fragkiskos Sardis, Orcid, Fragkiskos Sardis et al.· 0 citations
An experimental evaluation of ALTQ/CBQ demonstrating its sensitivity to a wide range of parameters and link layer driver design issues is attempted and suggestions for effective deployment in real networks are made.
— The increase in mobile data traffic in Fifth-Generation (5G) networks means that new handover management and content delivery solutions are needed to keep the network running smoothly and the user experience high. This paper introduces an innovative integration of Named Data Networking (NDN) into the 5G architecture, incorporating an Enhanced Popularity-Based Caching mechanism at the Multi-access Edge Computing (MEC) layer of the 5G user plane. Our design is different from previous ones because it changes how content is replicated based on how mobile and dense the User Equipment (UE) and gNB are in real time. Using Python-based models, we ran a lot of simulations to compare baseline 5G, edge-caching, and full NDN configurations. The proposed solution had a Handover Success Rate (HSR) of over 90%, a Cache Hit RAtio (CHR) of between 78% and 80%, an average latency of about 20 ms, and a packet loss rate of less than 1.0% across a wide range of network scenarios. The NDN integrated architecture cuts latency by up to 35%, boosts throughput by 40%, makes fallback efficiency improved by 36.8%, and raises average HSR by 25 – 40%. All of these changes improve the Quality of Experience (QoE) in environments with a lot of movement. The research we conduct aims to facilitate seamless, scalable, and resilient content delivery for next-generation 5G edge networks.
Ade Nurhayati· Journal of Communications· 0 citations
This work proposes a deployment strategy that reduces the need to upgrade expensive core routers by using existing networking mechanisms such as BGP communities, SRv6, and priority queues with rate caps, and demonstrates the feasibility of this approach through large scale experiments on the FABRIC testbed.
Harkirat Singh, Fatih Berkay Sarpkaya, Hakan Gulec et al.· 0 citations