• DocumentCode
    1763903
  • Title

    Coexistence of Wi-Fi and heterogeneous small cell networks sharing unlicensed spectrum

  • Author

    Haijun Zhang ; Xiaoli Chu ; Weisi Guo ; Siyi Wang

  • Author_Institution
    Beijing Univ. of Chem. Technol., Beijing, China
  • Volume
    53
  • Issue
    3
  • fYear
    2015
  • fDate
    42064
  • Firstpage
    158
  • Lastpage
    164
  • Abstract
    As two major players in terrestrial wireless communications, Wi-Fi systems and cellular networks have different origins and have largely evolved separately. Motivated by the exponentially increasing wireless data demand, cellular networks are evolving towards a heterogeneous and small cell network architecture, wherein small cells are expected to provide very high capacity. However, due to the limited licensed spectrum for cellular networks, any effort to achieve capacity growth through network densification will face the challenge of severe inter-cell interference. In view of this, recent standardization developments have started to consider the opportunities for cellular networks to use the unlicensed spectrum bands, including the 2.4 GHz and 5 GHz bands that are currently used by Wi-Fi, Zigbee and some other communication systems. In this article, we look into the coexistence of Wi-Fi and 4G cellular networks sharing the unlicensed spectrum. We introduce a network architecture where small cells use the same unlicensed spectrum that Wi-Fi systems operate in without affecting the performance of Wi-Fi systems. We present an almost blank subframe (ABS) scheme without priority to mitigate the co-channel interference from small cells to Wi-Fi systems, and propose an interference avoidance scheme based on small cells estimating the density of nearby Wi-Fi access points to facilitate their coexistence while sharing the same unlicensed spectrum. Simulation results show that the proposed network architecture and interference avoidance schemes can significantly increase the capacity of 4G heterogeneous cellular networks while maintaining the service quality of Wi-Fi systems.
  • Keywords
    4G mobile communication; Long Term Evolution; intersymbol interference; wireless LAN; 4G heterogeneous cellular networks; ABS scheme; Wi-Fi; almost blank subframe scheme; capacity growth; co-channel interference; heterogeneous small cell networks; inter-cell interference; network densification; terrestrial wireless communications; wireless data demand; Computer architecture; Handover; IEEE 802.11 Standards; Interference; Macrocell networks; Microprocessors;
  • fLanguage
    English
  • Journal_Title
    Communications Magazine, IEEE
  • Publisher
    ieee
  • ISSN
    0163-6804
  • Type

    jour

  • DOI
    10.1109/MCOM.2015.7060498
  • Filename
    7060498