A Generic Framework for Task Offloading in mmWave MEC Backhaul Networks

With the emergence of millimeter-Wave (mmWave) communication technology, the capacity of mobile backhaul networks can be significantly increased. On the other hand, Mobile Edge Computing (MEC) provides an appropriate infrastructure to offload latency-sensitive tasks. However, the amount of resources in MEC servers is typically limited. Therefore, it is important to intelligently manage the MEC task offloading by optimizing the backhaul bandwidth and edge server resource allocation in order to decrease the overall latency of the offloaded tasks. This paper investigates the task allocation problem in MEC environment, where the mmWave technology is used in the backhaul network. We formulate a Mixed Integer NonLinear Programming (MINLP) problem with the goal to minimize the total task serving time. Its objective is to determine an optimized network topology, identify which server is used to process a given offloaded task, find the path of each user task, and determine the allocated bandwidth to each task on mmWave backhaul links. Because the problem is difficult to solve, we develop a two-step approach. First, a Mixed Integer Linear Program (MILP) determining the network topology and the routing paths is optimally solved. Then, the fractions of bandwidth allocated to each user task are optimized by solving a quasi-convex problem. Numerical results illustrate the obtained topology and routing paths for selected scenarios and show that optimizing the bandwidth allocation significantly improves the total serving time, particularly for bandwidth-intensive tasks.

READ FULL TEXT

page 1

page 2

page 3

page 4

research
02/07/2018

Joint Task Assignment and Wireless Resource Allocation for Cooperative Mobile-Edge Computing

This paper studies a multi-user cooperative mobile-edge computing (MEC) ...
research
02/24/2022

Joint Program Partitioning and Resource Allocation for Completion Time Minimization in Multi-MEC Systems

This paper considers a practical mobile edge computing (MEC) system, whe...
research
05/15/2020

Joint Planning of Network Slicing and Mobile Edge Computing in 5G Networks

Multi-access Edge Computing (MEC) facilitates the deployment of critical...
research
09/04/2018

Optimal Steerable mmWave Mesh Backhaul Reconfiguration

Future 5G mobile networks will require increased backhaul (BH) capacity ...
research
06/13/2022

Deadline-constrained Multi-resource Task Mapping and Allocation for Edge-Cloud Systems

In an edge-cloud system, mobile devices can offload their computation in...
research
01/07/2019

Resilient Design of 5G Mobile-Edge Computing Over Intermittent mmWave Links

Two enablers of the 5th Generation (5G) of mobile communication systems ...
research
05/20/2018

Joint Path Selection and Rate Allocation Framework for 5G Self-Backhauled mmWave Networks

Owing to severe path loss and unreliable transmission over a long distan...

Please sign up or login with your details

Forgot password? Click here to reset