• DocumentCode
    1520763
  • Title

    A novel adaptive mismatch cancellation system for quadrature IF radio receivers

  • Author

    Yu, Li ; Snelgrove, W. Martin

  • Author_Institution
    Dept. of Electron., Carleton Univ., Ottawa, Ont., Canada
  • Volume
    46
  • Issue
    6
  • fYear
    1999
  • fDate
    6/1/1999 12:00:00 AM
  • Firstpage
    789
  • Lastpage
    801
  • Abstract
    This paper investigates and resolves in-phase/quadrature phase (I/Q) imbalances between the input paths of quadrature IF receivers. These mismatches along the paths result in the image interference aliasing into the desired signal band, thus reducing the dynamic range and degrading the performance of the receivers. I/Q errors occur because of gain and phase imbalances between quadrature mixers. They are also caused by capacitor mismatches in analog-to-digital converters (A/Ds), which are designed to be identical for each input path. This paper presents a novel and feasible digital signal processing (DSP) solution for the I/Q mismatch problems. The system includes a novel complex least mean square algorithm and a modified adaptive noise canceler (signal separator) to separate the desired signal and the image noise caused by the mismatch. The noise canceler can also solve the signal leakage problem, which is that the noise reference includes signal components. This system was implemented in a Xilinx FPGA and an Analog Devices DSP chip. It was tested with a complex intermediate frequency receiver, which includes an analog front end and a complex sigma-delta modulator. Both simulation results and test results show a dramatic attenuation of the image noise. Extending applications of the system to N-path systems further indicates the robustness and feasibility of this novel adaptive mismatch cancellation system
  • Keywords
    adaptive signal processing; digital radio; digital signal processing chips; field programmable gate arrays; least mean squares methods; radio receivers; DSP chip; FPGA; N-path systems; adaptive mismatch cancellation system; adaptive noise canceler; analog front end; capacitor mismatches; complex intermediate frequency receiver; complex least mean square algorithm; digital signal processing solution; dynamic range; image interference aliasing; image noise; in-phase/quadrature phase imbalances; input paths; phase imbalances; quadrature IF radio receivers; signal leakage problem; signal separator; Adaptive systems; Analog-digital conversion; Capacitors; Degradation; Digital signal processing; Dynamic range; Interference; Noise cancellation; Signal resolution; Testing;
  • fLanguage
    English
  • Journal_Title
    Circuits and Systems II: Analog and Digital Signal Processing, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1057-7130
  • Type

    jour

  • DOI
    10.1109/82.769786
  • Filename
    769786