Nova Patents
EP3166223A2

Ultra wide band digital pre-distortion

Abstract

A digital pre-distortion system can inversely model a power amplifier of a system to linearize the transmitter. A complex baseband model for digital pre-distortion based on a narrowband signal assumption is unworkable for an ultra wide band Cable television application. Predistortion can use a true wide band model including real-valued basis terms, obtained from a real-valued signal. When raised to a power, both even and odd harmonics or both odd or even other non-linear terms are represented and negative frequency fold-over can be accounted for. A Hilbert transform can be applied. Compressed sensing can be used to reduce the number of basis terms in the true real wide band model to generate a sparse model. Sparse equalization can be added to improve the stability of the digital pre-distortion system.

EP3166223A2, drawing sheet 1
Sheet 1 of 34

Term

10 yearsto projected expiry

Projected expiry 6 October 2036, counted from filing; an application has no term until it is granted.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

15 claims: 11 independent, 4 dependent

  1. 1
    A system to drive a wired load with a wideband signal, the system comprising:a digital predistortion (DPD) circuit (1112), including a DPD input to receive a DPD input signal and a DPD output providing a DPD output signal based upon which a power amplifier (PA) circuit is driven for communicating a PA output signal onto the wired load, wherein the DPD circuit (104) is configured to operate according to an inverse model of the PA circuit;and the inverse model of the PA circuit including real-valued basis terms, obtained from a real-valued signal, raised to a power to capture both odd and even harmonics or both odd and even other non-linear terms.
  2. 3
    The system of any of claims 1 or 2, wherein the inverse model of the PA circuit includes tested basis terms that have been tested using an orthogonal matching pursuit (OMP) technique.
  3. 4
    The system of any of claims 1 through 3, wherein the real-valued basis terms include Hilbert-transformed real-valued basis terms.
  4. 5
    The system of any of claims 1 through 4, comprising a transmitter circuit including the PA circuit, the transmitter circuit also including a digital-to-analog converter (DAC) circuit between the DPD circuit and the PA circuit, and further comprising:an equalizer circuit (1304) located between the DPD circuit and the transmitter circuit;and an observation receiver circuit feeding back a signal from downstream of the PA circuit to the DPD circuit via the inverse model of the PA circuit.
  5. 6
    The system of any of claims 1 through 5, comprising a scheduler circuit (1104), configured to be capable of independently scheduling (1) building the inverse model using the real-valued basis terms;and (2) compressing the inverse model into the sparse inverse model by providing tested basis terms that meet the at least one criterion for eliminating redundant or inactive basis terms.
  6. 7
    The system of any of claims 1 through 6, in which the inverse model of the PA circuit excludes complex-valued basis terms and includes only real-valued basis terms.
  7. 8
    A method of driving a wired load with a wideband signal, the method comprising:predistorting a received digital input signal to produce a predistorted signal for providing to a transmitter circuit including a Power Amplifier (PA) circuit having a nonlinear characteristic compensated;and using an inverse model of the PA for the predistorting, the inverse model of the PA circuit including real-valued basis terms, obtained from a real-valued signal, raised to a power to capture both odd and even harmonics or both odd and even other non-linear terms.
  8. 10
    The method of any of claims 8 or 9, comprising generating a sparse inverse model of the PA for the predistorting from the inverse model of the PA by testing the basis terms using at least one criterion for eliminating redundant or inactive basis terms and excluding tested basis terms that do not meet the at least one criterion from the sparse inverse model.
  9. 11
    The method of any of claims 8 through 10, comprising generating the sparse inverse model using an orthogonal matching pursuit (OMP) technique.
  10. 12
    The method of any of claims 8 through 11, comprising scheduling generating the inverse model independently from scheduling generating the sparse inverse model.
  11. 13
    The method of any of claims 8 through 12, comprising using Hilbert-transformed real-valued basis terms as the real-valued basis terms in the inverse model of the PA.
  12. 14
    The method of any of claims 8 through 13, comprising:equalizing the predistorted signal to produce an equalized signal;converting, using a digital-to-analog conversion, the equalized signal into an analog signal to be provided to an input of the power amplifier;and feeding back a signal observed downstream from the power amplifier circuit to adjust the predistorting.