English

Fronthaul-Aware Software-Defined Joint Resource Allocation and User Scheduling for 5G Networks

Networking and Internet Architecture 2017-01-06 v1

Abstract

Software-defined networking (SDN) is the concept of decoupling the control and data planes to create a flexible and agile network, assisted by a central controller. However, the performance of SDN highly depends on the limitations in the fronthaul which are inadequately discussed in the existing literature. In this paper, a fronthaul-aware software-defined resource allocation mechanism is proposed for 5G wireless networks with in-band wireless fronthaul constraints. Considering the fronthaul capacity, the controller maximizes the time-averaged network throughput by enforcing a coarse correlated equilibrium (CCE) and incentivizing base stations (BSs) to locally optimize their decisions to ensure mobile users' (MUs) quality-of-service (QoS) requirements. By marrying tools from Lyapunov stochastic optimization and game theory, we propose a two-timescale approach where the controller gives recommendations, i.e., sub-carriers with low interference, in a long-timescale whereas BSs schedule their own MUs and allocate the available resources in every time slot. Numerical results show considerable throughput enhancements and delay reductions over a non-SDN network baseline.

Keywords

Cite

@article{arxiv.1701.01321,
  title  = {Fronthaul-Aware Software-Defined Joint Resource Allocation and User Scheduling for 5G Networks},
  author = {Chen-Feng Liu and Sumudu Samarakoon and Mehdi Bennis},
  journal= {arXiv preprint arXiv:1701.01321},
  year   = {2017}
}

Comments

Accepted in GLOBECOM Workshops 2016

R2 v1 2026-06-22T17:41:57.732Z