Experimental Demonstration of Flexible Hardware Acceleration in 5G MEC Infrastructure

Q Tang, R Gu, G Zhang, S Wang… - 2018 Asia …, 2018 - ieeexplore.ieee.org
Experimental Demonstration of Flexible Hardware Acceleration in 5G MEC Infrastructure Page
1 Experimental Demonstration of Flexible Hardware Acceleration in 5G MEC Infrastructure …

Coordinating multi-access edge computing with mobile fronthaul for optimizing 5G end-to-end latency

W Wang, Y Zhao, M Tornatore, H Li… - 2018 Optical Fiber …, 2018 - ieeexplore.ieee.org
Coordinating Multi-access Edge Computing with Mobile Fronthaul for Optimizing 5G End-to-End
Latency Page 1 M4I.3.pdf OFC 2018 © OSA 2018 Coordinating Multi-access Edge Computing …

Support for edge computing in the 5G network

Y Choi, N Park - … on Ubiquitous and Future Networks (ICUFN), 2018 - ieeexplore.ieee.org
Networks beyond 2020 are required to support diverse use cases. Among the emerging
services, support of delay critical mobile applications require network enhancements to …

[PDF][PDF] User Plane Hardware Acceleration in Access Networks: Experiences in Offloading Network Functions in Real 5G Deployments.

R Kundel, T Meuser, T Koppe, R Hark… - HICSS, 2022 - pdfs.semanticscholar.org
Fulfilling the ambitious Quality of Service demands of today's wireless networks, especially
low latency, high bandwidths and availability, is a big challenge for researchers, network …

MEC architectures in 4G and 5G mobile networks

J Zhang, Z Wu, W Xie, F Yang - 2018 10th International …, 2018 - ieeexplore.ieee.org
Multi-access Edge Computing (MEC) can provide the intelligent platform or environment for
services with the requirements of lower latency, higher bandwidth, and higher computation …

Experimental Demonstration of “PON+ Embedded-Hardware-Switch” for Low-Latency Communication in Dual-Stage 5G Fronthaul Network Architecture

Y Fu, R Gu, Y Ji - 2017 European Conference on Optical …, 2017 - ieeexplore.ieee.org
We demonstrated a “PON+ embedded-hardware-switch” system to accelerate data
transmission in 5G fronthaul within the 8.5 μs total processing latency. The switch …

BeGREEN: beyond 5G energy efficient networking by hardware acceleration and ai-driven management of network functions

M Ghoraishi, JO Sallent, M Catalan-Cid… - 2023 Joint European …, 2023 - ieeexplore.ieee.org
This paper presents a technical overview of BeGREEN project, a Horizon Europe, Smart
Networks and Services Joint-Undertaking (SNS-JU) Phase 1 project kicked off on January 1 …

Parallel computation offloading between MEC servers with metro optical network

W Zhang, S Yin, C Yang, Z Luo… - 2021 Opto-Electronics …, 2021 - ieeexplore.ieee.org
Parallel Computation Offloading Between MEC Servers with Metro Optical Network Page 1
Parallel Computation Offloading Between MEC Servers with Metro Optical Network Wei Zhang …

Latency Study of Fast Optical Add-Drop Multiplexer Based Metro Access Network with Edge Computing for 5G Applications

B Pan, F Yan, X Xue, E Magelhaes… - … (OECC) and 2019 …, 2019 - ieeexplore.ieee.org
Latency Study of Fast Optical Add-Drop Multiplexer Based Metro Access Network with Edge
Computing for 5G Applications Page 1 OECC/PSC 2019 ©IEICE Latency Study of Fast …

Ceupf: Offloading 5g user plane function to programmable hardware base on co-existence architecture

Z Cong, Z Baokang, W Baosheng, Y Yulei - Proceedings of the 2021 …, 2021 - dl.acm.org
Growing 5G1 applications require a user plane that has a high forward throughput and low
packets loss. To meet these requirements, 5G acceleration means emerge, and User Plane …