IL244153A

Non-uniform parameter quantization for advanced coupling

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21 claims: 15 independent, 6 dependent

  1. 1
    244153/2 CLAIMS 1. A method in an audio encoder for quantization of parameters relating to parametric spatial coding of audio signals, comprising:receiving at least a first parameter and a second parameter to be quantized;quantizing the first parameter based on a first scalar quantization scheme having non-uniform step-sizes to obtain a quantized first parameter, wherein the non-uniform step-sizes are selected such that smaller step-sizes are used for ranges of the first parameter where the human sound perception is most sensitive, and larger step-sizes are used for ranges of the first parameter where the human sound perception is less sensitive;dequantizing the quantized first parameter using the first scalar quantization scheme to obtain a dequantized first parameter being an approximation of the first parameter;accessing a scaling function which maps values of the dequantized first parameter on scaling factors which increase with the step-sizes corresponding to the values of the dequantized first parameter, and determining a scaling factor by subjecting the dequantized first parameter to the scaling function;and quantizing the second parameter based on the scaling factor and a second scalar quantization scheme having non-uniform step-sizes to obtain a quantized second parameter.
  2. 3
    The method of any one of the preceding claims, wherein the step of quantizing the second parameter based on the scaling factor and the second scalar quantization scheme comprises dividing the second parameter by the scaling factor prior to subjecting the second parameter to quantization in accordance with the second scalar quantization scheme.
  3. 5
    The method of any one of the preceding claims, wherein the non-uniform step-sizes of the second scalar quantization scheme increase with the value of the second parameter.
  4. 6
    The method of any one of the preceding claims, wherein the first scalar quantization scheme comprises more quantization steps than the second scalar quantization scheme.
  5. 7
    The method of any one of the preceding claims wherein the first scalar quantization scheme is constructed by offsetting, mirroring, and concatenating the second scalar quantization scheme.
  6. 8
    The method of any one of the preceding claims, wherein the largest step-size of the first and/or second scalar quantization scheme is approximately four times larger than the smallest step-size of the first and/or second scalar quantization scheme.
  7. 9
    A computer-readable medium comprising computer code instructions adapted to carry out the method of any one of claims 1 - 8 when executed by a device having processing capability.
  8. 10
    An audio encoder for quantization of parameters relating to parametric spatial coding of audio signals, comprising:a receiving component arranged to receive at least a first parameter and a second parameter to be quantized;a first quantizing component arranged downstreams of the receiving component configured to quantize the first parameter based on a first scalar quantization scheme having non-uniform step-sizes to obtain a quantized first parameter, wherein the non-uniform step-sizes are selected such that smaller step-sizes are used for ranges of the first parameter where the human sound perception is most sensitive, and larger step-sizes are used for ranges of the first parameter where the human sound perception is less sensitive;a dequantizing component configured to receive the first quantized parameter from the first quantizing component, and to dequantize the quantized first parameter 17 244153/2 using the first scalar quantization scheme to obtain a dequantized first parameter being an approximation of the first parameter;a scaling factor determining component configured to receive the dequantized first parameter, access a scaling function which maps values of the dequantized first parameter on scaling factors which increase with the step-sizes corresponding to the values of the dequantized first parameter, and determine a scaling factor by subjecting the dequantized first parameter to the scaling function;and a second quantizing component configured to receive the second parameter and the scaling factor, and quantize the second parameter based on the scaling factor and a second scalar quantization scheme having non-uniform step-sizes to obtain a quantized second parameter.
  9. 11
    A method in an audio decoder for dequantization of quantized parameters relating to parametric spatial coding of audio signals, comprising:receiving at least a first quantized parameter and a second quantized parameter;dequantizing the quantized first parameter according to a first scalar quantization scheme having non-uniform step-sizes to obtain a dequantized first parameter, wherein the non-uniform step-sizes are selected such that smaller step-sizes are used for ranges of the first parameter where the human sound perception is most sensitive, and larger step-sizes are used for ranges of the first parameter where the human sound perception is less sensitive;accessing a scaling function which maps values of the dequantized first parameter on scaling factors which increase with the step-sizes corresponding to the values of the dequantized first parameter, and determining a scaling factor by subjecting the dequantized first parameter to the scaling function;and dequantizing the second quantized parameter based on the scaling factor and a second scalar quantization scheme having non-uniform step-sizes to obtain a dequantized second parameter.
  10. 15
    The method of any one of claims 11 - 14, wherein the non-uniform step-size of the second scalar quantization scheme increases with the value of the second parameter.
  11. 16
    The method of any one of claims 11 - 15, wherein the first scalar quantization scheme comprises more quantization steps than the second scalar quantization scheme.
  12. 17
    The method of any one of claims 11 - 16, wherein the first scalar quantization scheme is constructed by offsetting, mirroring, and concatenating the second scalar quantization scheme.
  13. 18
    The method of any one of claims 11 - 17, wherein the largest step-size of the first and/or second scalar quantization scheme is approximately four times larger than the smallest step-size of the first and/or second scalar quantization scheme.
  14. 19
    A computer-readable medium comprising computer code instructions adapted to carry out the method of any one of claims 11 - 18 when executed by a device having processing capability.
  15. 20
    An audio decoder for dequantization of quantized parameters relating to parametric spatial coding of audio signals, comprising:a receiving component configured to receive at least a first quantized parameter and a second quantized parameter;a first dequantizing component arranged downstreams of the receiving component and configured to dequantize the quantized first parameter according to 19 244153/2 a first scalar quantization scheme having non-uniform step-sizes to obtain a dequantized first parameter, wherein the non-uniform step-sizes are selected such that smaller step-sizes are used for ranges of the first parameter where the human sound perception is most sensitive, and larger step-sizes are used for ranges of the first parameter where the human sound perception is less sensitive;a scaling factor determining component configured to receive the dequantized first parameter from the first dequantizing component, access a scaling function which maps values of the dequantized first parameter on scaling factors which increase with the step-sizes corresponding to the values of the dequantized first parameter, and determine a scaling factor by subjecting the dequantized first parameter to the scaling function;and a second dequantizing component configured to receive the scaling factor and the second quantized parameter, and dequantize the second quantized parameter based on the scaling factor and a second scalar quantization scheme having non-uniform step-sizes to obtain a dequantized second parameter.