• DocumentCode
    3610228
  • Title

    Digital Compensation for Transmitter Leakage in Non-Contiguous Carrier Aggregation Applications With FPGA Implementation

  • Author

    Chao Yu ; Wenhui Cao ; Yan Guo ; Zhu, Anding

  • Author_Institution
    Sch. of Inf. Sci. & Eng., Southeast Univ., Nanjing, China
  • Volume
    63
  • Issue
    12
  • fYear
    2015
  • Firstpage
    4306
  • Lastpage
    4318
  • Abstract
    In this paper, a generalized dual-basis envelope-dependent sideband (GDES) distortion model structure is proposed to compensate the distortion induced by transmitter leakage in concurrent multi-band transceivers with non-contiguous carrier aggregation. This model has a generalized structure that is constructed via first generating a nonlinear basis function that maps the inputs to the target frequency band where the distortion is to be cancelled, and then multiplying with a second basis function that generates envelope-dependent nonlinearities. By combining these two bases, the model keeps in a relatively compact form that can be flexibly implemented in digital circuits such as field programmable gate array (FPGA). Experimental results demonstrated that excellent suppression performance can be achieved with very low implementation complexity by employing the proposed model.
  • Keywords
    compensation; distortion; field programmable gate arrays; radio transceivers; FPGA; GDES; concurrent multiband transceivers; digital circuits; digital compensation; envelope-dependent nonlinearity; field programmable gate array; generalized dual-basis envelope-dependent sideband distortion model structure; noncontiguous carrier aggregation; nonlinear basis function; transmitter leakage; Amplitude modulation; Complexity theory; Integrated circuit modeling; Nonlinear distortion; Receivers; Transmitters; Behavioral model; carrier aggregation; multi-band; power amplifiers; transmitter leakage suppression;
  • fLanguage
    English
  • Journal_Title
    Microwave Theory and Techniques, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9480
  • Type

    jour

  • DOI
    10.1109/TMTT.2015.2495144
  • Filename
    7327257