EP0474615B1

D.C. offset compensation in a radio receiver

Abstract

This record has no abstract on file.

EP0474615B1, drawing sheet 1
Sheet 1 of 15

Term

Term ended

Expired 5 September 2011, 15.1 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

30 claims: 8 independent, 22 dependent

  1. 1
    In a radio receiver, an apparatus for compensating for DC offset in a received signal, comprising:means for generating a channel signal from a received radio signal;blocking means (10) for blocking the DC component of the channel signal;amplifying means (11), connected to said blocking means, for amplifying a signal output from said blocking means and producing an amplified signal;restoring means (12), connected to said amplifying means, for restoring said DC component to said amplified signal, said restoring means having an output for a restored signal including said amplified signal and said DC component;characterized in that the apparatus further comprises: means (15), connected to the output of said restoring means, for estimating an error in the restored DC component;memory means (16), connected to the restoring means, for storing the restored signal;and subtracting means (17), connected to said estimating means and said memory means, for subtracting the estimated error from the restored signal to thereby substantially free the signal output from said subtracting means from low frequency distortion.
  2. 6
    In a radio receiver, an apparatus for compensating for DC offset in a received signal, comprising:means for generating a channel signal from a received radio signal;blocking and restoring means (20) for blocking the DC component of the channel signal and restoring said DC component to said received radio signal, characterized in that said blocking and restoring means comprises means for differentiating the channel signal to eliminate the DC component in the channel signal and means for integrating the channel signal to thereby recover said DC component, both said differentiating and integrating means consisting of a single capacitor (20), and in that the apparatus further comprises: amplifying means (22), connected to said blocking and restoring means, for amplifying a signal output from said blocking and restoring means and producing an amplified signal;means (15), connected to the output of said amplifying means, for estimating an error in the amplified signal;memory means (16), connected to the amplifying means, for storing the amplified signal;and subtracting means (17), connected to said estimating means and said memory means, for subtracting the estimated error from the amplified signal to thereby substantially free the signal output from said subtracting means from low frequency distortion.
  3. 11
    A radio receiving apparatus for receiving an RF signal and applying said RF signal to first and second quadrature channels, comprising:a local oscillator;and first and second mixers, associated with said first and second quadrature channels, respectively, each having one input for receiving said RF signal and a second input for receiving from said local oscillator sinusoidal signals at a carrier frequency of said RF signal;characterized in that the radio receiving apparatus further comprises: first and second differentiating means (10) for respectively differentiating outputs from said first and second mixers in order to eliminate DC offset components generated by imbalances between said first and second mixers;first and second amplifying means (11) for respectively amplifying outputs from said first and second differentiating means;first and second integrating means (12) for respectively integrating outputs from said first and second amplifying means to restore DC offset components of said outputs from said first and second mixers;means (15), connected to outputs of said first and second integrating means, for estimating errors in said restored DC offset components;memory means (16), connected to said first and second integrating means, for storing signals from said first and second integrating means;and means (17) for combining said estimated errors with said stored signals to thereby substantially free the output of the combining means from low frequency distortion.
  4. 12
    A radio receiving apparatus for receiving an RF signal and applying said RF signal to first and second quadrature channels, comprising:a local oscillator;and first and second mixers, associated with said first and second quadrature channels, respectively, each having one input for receiving said RF signal and a second input for receiving from said local oscillator sinusoidal signals at a carrier frequency of said RF signal;characterized in that the radio receiving apparatus further comprises: first and second differentiating and integrating means (20) for respectively differentiating outputs from said first and second mixers in order to eliminate DC offset components generated by imbalances between said first and second mixers and respectively integrating outputs from said first and second mixers to restore DC offset components of said outputs from said first and second mixers, said first and second differentiating and integrating means each respectively consisting of a single capacitor (20);first and second amplifying means (22) for respectively amplifying outputs from said first and second differentiating and integrating means;means (15), connected to outputs of said first and second amplifying means, for estimating errors in said restored DC offset components;memory means (16), connected to outputs of said first and second amplifying means, for storing signals from said first and second amplifying means;and means (17) for combining said estimated errors with said stored signals to thereby substantially free the output of the combining means from low frequency distortion.
  5. 17
    In a radio receiver, an apparatus for compensating for DC offset in a received signal, comprising:comparator means (40) for comparing a received signal with a feedback signal and for generating a first digital value if said received signal exceeds said feedback signal and a second digital value if said received signal is less than said feedback signal;memory means (45) for storing a sequence of digital values output from said comparator means;deciding means (46), connected to said memory means, for receiving said sequence of digital values and for deciding a current step value;and first integrating means (42) for integrating current step values received from said deciding means and for generating said feedback signal;characterized in that the apparatus further comprises second integrating means (50) for receiving said digital values from said memory means and for integrating said digital values in order to restore DC components of said received signal;means (15), connected to the output of said second integrating means, for estimating an error in the restored DC components;further memory means (16), connected to said second integrating means, for storing the restored signal;and subtracting means (17), connected to said estimating means and said further memory means, for subtracting the estimated error from the restored signal to thereby substantially free the signal output from said subtracting means from low frequency distortion.
  6. 22
    A radio receiving apparatus for receiving an RF signal and applying said RF signal to first and second quadrature channels, comprising means for receiving said RF signal and separating said RF signal into first and second quadrature signals,    characterized in that the radio receiving apparatus further comprises:first and second comparator means (40) for comparing said first and second quadrature signals with first and second feedback signals respectively, and for generating a first digital value if said received signal exceeds said feedback signal and a second digital value if said received signal is less than said feedback signal;first and second memory means (45) for storing corresponding sequences of said digital values generated by said first and second comparator means, respectively;first and second deciding means (46), connected to said first and second memory means, for receiving said sequences of digital values and for deciding a joint current step value;first and second integrating means (42) for integrating joint current step values received from said deciding means and for generating said first and second feedback signals which are sent to said first and second comparator means, respectively;first and second reintegrating means (50) for reintegrating said corresponding digital values received from said first and second memory means in order to restore DC components of said received signal;first and second means (15), connected to the outputs of said first and second reintegrating means (50) for estimating errors in the restored DC components;further first and second memory means (16) connected to the outputs of said first and second reintegrating means (50) for storing the restored signals;and first and second subtracting means (17) connected to said first and second estimating means and further memory means for subtracting the estimated errors from the restored signals to thereby substantially free the signals output from said first and second subtracting means from low frequency distortion.
  7. 23
    A radio receiver for receiving an RF signal and applying said RF signal to plural channels, comprising:means for receiving said RF signal and separating said RF signals into a plurality of channel signals,    characterized in that the radio receiver further comprises: plural delta modulating means (47) for receiving respective channel signals, each delta modulating means generating a digital output;plural memory means (45) for storing digital sequences of digital outputs from corresponding ones of said plural delta modulating means;adaptive means (46), connected to said plural memory means, for adapting step value signals fed back to corresponding ones of said plural delta modulating means;plural reintegrating means (50) for integrating a corresponding digital output received from corresponding ones of said plural memory means in order to restore DC components of said channel signals;plural means (15), connected to the outputs of said plural reintegrating means (50), for estimating errors in the restored DC components;plural further memory means (16) connected to said plural reintegrating means (50) for storing signals from said plural reintegrating means;and plural means (17) for algebraically combining said estimated errors in the restored DC components with said stored signals to thereby substantially free the output of each combining means from low frequency distortion.
  8. 28
    A method for compensating for DC offset in an signal received in a multi-channel RF receiver, comprising the steps of:comparing a received signal with a feedback signal and generating a first digital value if said received signal exceeds said feedback signal and a second digital value if said received signal is less than said feedback signal;storing a sequence of said digital values produced in said comparing step;determining a current step value based on said sequence of digital values;and integrating said current step value and generating said feedback signal;characterized in that the method further comprises the steps of: reintegrating said digital values stored at said storing step in-order to restore DC components of said received signal;estimating errors in the restored DC components;storing the restored signals;and subtracting the estimated errors from the restored signals to thereby substantially free the output resulting from the substraction from low frequency distortion.