• DocumentCode
    3607039
  • Title

    Self-IQ-Demodulation Based Compensation Scheme of Frequency-Dependent IQ Imbalance for Wideband Direct-Conversion Transmitters

  • Author

    Wei Li ; Yue Zhang ; Li-Ke Huang ; Cosmas, John ; Maple, Carsten ; Jian Xiong

  • Author_Institution
    Cobham Wireless, Stevenage, UK
  • Volume
    61
  • Issue
    4
  • fYear
    2015
  • Firstpage
    666
  • Lastpage
    673
  • Abstract
    A low cost frequency-dependent (FD) I/Q imbalance self-compensation scheme is investigated in this paper. The direct conversion transmitters are widely used in wireless systems. However, the unwanted image-frequencies and distortions are inevitably introduced into the direct conversion system. This problem is even severer in wideband systems. Therefore, the accurate estimation and compensation of I/Q imbalance is crucial. The current compensation method is based on external instruments or internal feedback path which introduces additional impairments and is expensive. This paper proposes a low cost FD I/Q imbalance self-IQ-demodulation based compensation scheme without using external calibration instruments. First, the impairments of baseband and RF components are investigated. Further, I/Q imbalance model is developed. Then, the proposed two-step self-IQ-demodulation based compensation scheme is investigated. In the first step of the scheme, the local oscillator (LO) related I/Q impairments parameters are estimated. Then in the second step, the overall FD I/Q imbalance parameters are estimated by utilizing the transmitter LO. To realize this self-IQ-demodulation algorithm, this paper introduces minor modifications to the current power detector circuit. Afterwards, the estimated parameters are applied to the baseband equivalent compensator. This sophisticated algorithm guarantees low computation complexity and low cost. The compensation performance is evaluated in laboratory measurement.
  • Keywords
    computational complexity; demodulation; parameter estimation; radio transmitters; radiofrequency oscillators; IQ imbalance estimation; baseband equivalent compensator; current compensation method; current power detector circuit; external calibration instrument; internal feedback path; local oscillator; low computation complexity; low cost FD IQ imbalance self-IQ-demodulation based compensation scheme; low cost frequency-dependent IQ imbalance self-compensation scheme; parameter estimation; two-step self-IQ-demodulation based compensation scheme; unwanted distortion; unwanted image-frequencies; wideband direct conversion transmitter; wideband system; wireless system; Analog-digital conversion; Calibration; Demodulation; Digital audio broadcasting; Digital video broadcasting; Interference; Wideband; Direct conversion transmitters; IQ imbalance; LO; RF; automatic calibration; image-frequency interference;
  • fLanguage
    English
  • Journal_Title
    Broadcasting, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9316
  • Type

    jour

  • DOI
    10.1109/TBC.2015.2465138
  • Filename
    7277012