• DocumentCode
    3605211
  • Title

    Adaptive Compression and Joint Detection for Fronthaul Uplinks in Cloud Radio Access Networks

  • Author

    Vu, Thang X. ; Nguyen, Hieu D. ; Quek, Tony Q. S.

  • Author_Institution
    Inf. Syst. Technol. & Design Pillar, Singapore Univ. of Technol. & Design, Singapore, Singapore
  • Volume
    63
  • Issue
    11
  • fYear
    2015
  • Firstpage
    4565
  • Lastpage
    4575
  • Abstract
    Cloud radio access network (C-RAN) has recently attracted much attention as a promising architecture for future mobile networks to sustain the exponential growth of data rate. In C-RAN, one data processing center or baseband unit (BBU) communicates with users via distributed remote radio heads (RRHs), which are connected to the BBU via high capacity, low latency fronthaul links. In this paper, we study the compression on fronthaul uplinks and propose a joint decompression algorithm at the BBU. The central premise behind the proposed algorithm is to exploit the correlation between RRHs. Our contribution is threefold. First, we propose a joint decompression and detection (JDD) algorithm which jointly performs decompressing and detecting. The JDD algorithm takes into consideration both the fading and compression effect in a single decoding step. Second, block error rate (BLER) of the proposed algorithm is analyzed in closed-form by using pair-wise error probability analysis. Third, based on the analyzed BLER, we propose adaptive compression schemes subject to quality of service (QoS) constraints to minimize the fronthaul transmission rate while satisfying the pre-defined target QoS. As a dual problem, we also propose a scheme to minimize the signal distortion subject to fronthaul rate constraint. Numerical results demonstrate that the proposed adaptive compression schemes can achieve a compression ratio of 300% in experimental setups.
  • Keywords
    adaptive signal detection; data compression; mobile radio; quality of service; radio access networks; adaptive compression; baseband unit; block error rate; cloud radio access networks; data processing center; fronthaul uplinks; joint decompression and detection algorithm; mobile networks; quality of service; signal detection; Baseband; Fading; Joints; Noise; Quality of service; Quantization (signal); Uplink; Cloud radio access network; fronthaul link; joint decompression and detection; optimization;
  • fLanguage
    English
  • Journal_Title
    Communications, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0090-6778
  • Type

    jour

  • DOI
    10.1109/TCOMM.2015.2475430
  • Filename
    7234851