EP1968189A2

Apparatus and method for control of power ratios for in-phase and quadrature channels in a communications system

Abstract

A transmitter in a radiocommunications system such as a Wideband Code Division Multiple Access (WCDMA) communications system transmits one set of data on an in-phase (I-) channel and another set of data on a quadrature (Q-) channel. The transmitter generates a gain signal, β, and multiplies the digital data associated with the Q-channel by the gain signal, β. Complexity of the multiplication operation is reduced by limiting the gain signal, β, to a finite number of values that are exactly representable by a predefined number of bits, such as 4-bit values to the right of a binary radix point. Modulation inaccuracy associated with quantization of β can be eliminated by utilizing the same quantized values of β in all components within the radiocommunications system.

EP1968189A2, drawing sheet 1
Sheet 1 of 6

Term

Term ended

Projected expiry passed 23 August 2019, 7.1 years ago.

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17 claims: 6 independent, 11 dependent

  1. 1
    An apparatus for use in a transmitter, the apparatus comprising:means for receiving digital data (101) associated with an in-phase (I-) channel;means for receiving digital data (103) associated with a quadrature (Q-) channel;means (107) for generating a gain signal, β, which represents a gain value selected from a finite number of gain values that are exactly representable by a predetermined number of bits;means (105) for multiplying the digital data associated with one of the channels by the gain signal , β, in order to control a power ratio between the in-phase (I-) channel and the quadrature (Q-) channel;wherein the gain signal, β, is a rounded function of a data rate of digital data associated with one of the channels.
  2. 4
    An apparatus as claimed in any one of the preceding claims, wherein the predetermined number of bits is four.
  3. 5
    A method for use in a transmitter, the method comprising the steps of:receiving digital data associated with an in-phase (I-) channel (101);receiving digital data associated with a quadrature (Q-) channel (103);generating a gain signal, β, which represents a gain value selected from a finite number of gain values that are exactly representable by a predetermined number of bits;multiplying the digital data associated with one of the channels by the gain signal, β, in order to control a power ratio between the in-phase (I-) channel and the quadrature (Q-) channel;wherein the step of generating a gain signal comprises the steps of: rounding the gain signal, β, to a function of a data rate of digital data associated with one of the channels.
  4. 8
    A method as claimed in any one of claims 5 to 7, wherein the predetermined number of bits is four.
  5. 9
    An apparatus for use in a transmitter, the apparatus comprising:means for receiving digital data (101) associated with an in-phase (I-) channel;means for receiving digital data (103) associated with a quadrature (Q-) channel;means (107) for generating a gain signal, β;means (105) for multiplying the digital data associated with the Q-channel (103) by the gain signal , β;wherein the gain signal, β, represents a gain value that is exactly representable by 4-bit signals to the right of a binary radix point.
  6. 13
    A method for use in a transmitter, the method comprising the steps of:receiving digital data associated with an in-phase (I-) channel (101);receiving digital data associated with a quadrature (Q-) channel (103);generating a gain signal, β;multiplying the digital data associated with the Q-channel (103) by the gain signal, β;wherein the gains signal, β, represents a gain value that is exactly representable by 4-bit signals to the right of a binary radix point.