10th EAI International Conference on Communications and Networking in China

Research Article

A Joint Utility Optimization Based Virtual AP and Network Slice Selection Scheme for SDWNs

  • @INPROCEEDINGS{10.4108/eai.15-8-2015.2260748,
        author={Xun Hu and Rong Chai and Guixiang Jiang and Haipeng Li},
        title={A Joint Utility Optimization Based Virtual AP and Network Slice Selection Scheme for SDWNs},
        proceedings={10th EAI International Conference on Communications and Networking in China},
        publisher={IEEE},
        proceedings_a={CHINACOM},
        year={2015},
        month={9},
        keywords={access selection software-defined wireless network network virtualization utility function network calculus},
        doi={10.4108/eai.15-8-2015.2260748}
    }
    
  • Xun Hu
    Rong Chai
    Guixiang Jiang
    Haipeng Li
    Year: 2015
    A Joint Utility Optimization Based Virtual AP and Network Slice Selection Scheme for SDWNs
    CHINACOM
    IEEE
    DOI: 10.4108/eai.15-8-2015.2260748
Xun Hu1,*, Rong Chai1, Guixiang Jiang1, Haipeng Li1
  • 1: Chongqing University of Posts and Telecommunications
*Contact email: yoyohu520@qq.com

Abstract

The proliferation of mobile demands and increasingly multifarious services pose challenges to both the radio access networks (RANs) and the core network (CN). Unfortunately, the traditional networks can hardly meet the increasing requirements. Software-defined network (SDN) and network virtualization (NV) are considered as innovative paradigms to stress these problems. By extending SDN to wireless networks, software-defined wireless network (SDWN) consisting of both RANs and CN can be obtained. In this paper, the RANs and CN of SDWN are virtualized to virtual access points (VAPs) and network slices respectively based on NV technology. Considering the system scenario that a SDWN consists of overlapping RANs, an optimal joint VAP and network slice selection scheme is proposed. To characterize the complicated transmission performance of VAPs and network slices, the concepts of utility function and network calculus are introduced, and the joint utility of VAPs and network slices is formulated based on which the optimal VAP and network slice combination corresponding to the maximal joint utility can be selected. The simulation results demonstrate the efficiency of the proposed scheme.