AU2005299410B2

Calculating and adjusting the perceived loudness and/or the perceived spectral balance of an audio signal

Abstract

The invention relates to the control of the perceived sound loudness and/or the perceived spectral balance of an audio signal. An audio signal is modified in response to modification parameters obtainable from calculations performed at least in part in the perceptual (psychoacoustic) loudness domain. The invention is useful, for example, in one or more of: loudness-compensating volume control, automatic gain control, dynamic range control (including, for example, limiters, compressors, expanders, etc.), dynamic equalization, and compensating for background noise interference in an audio playback environment. The invention includes not only methods but also corresponding computer programs and apparatus.

AU2005299410B2, drawing sheet 1
Sheet 1 of 16

Term

Term ended

Expired 25 October 2025, 0.9 years ago.

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

10 claims: 3 independent, 7 dependent

  1. 1
    2005299410 17 Dec 2010 DEC.17.2010 09:48 #6812 P.009 /021 Claims . 1. Λ method for controlling a particular loudness characteristic of an audio signal, wherein the particular loudness characteristic is either the specific loudness, which is 5 a measure on a linear scale of perceptual loudness as a function of frequency and time, or the partial specific loudness, which is a measure on a linear scale of perceptual loudness of the signal in the presence of a secondary interlering signal as a function of frequency and time, comprising deriving, as a. function of the audio signal, a target specific loudness, 10 deriving frequency- and time-variant modification parameters usable for modifying the audio signal in order to reduce the difference between its particular loudness characteristic and the target specific loudness, and applying the modification parameters to the audio signal to reduce the difference between its particular loudness characteristic and the target specific 15 loudness.
  2. 2
    Λ method for controlling a particular loudness characteristic ol’an audio signal, wherein the particular loudness characteristic is either the specific loudness, which is a measure on a linear scale of perceptual loudness as a function of frequency and 20 time, or the partial specific loudness, which is a measure on a linear scale of perceptual loudness of the audio signal in the presence of a secondary interfering signal as a function of frequency and time, comprising receiving from a transmission or reproducing from a storage medium the audio signal and frequency-and time-variant modification parameters for modifying the 25 audio signal, the modification parameters having been derived by a method comprising deriving, as a function of the audio signal, a target specific loudness, and deriving frequency- and time-variant modification parameters usable 30 for modifying the audio signal in order to reduce the difference between its particular loudness characteristic and the target specific loudness, and COMS ID No:ARCS-303612 Received by IP Australia: Time (H:m) 10:01 Date (Y-M-d) 2010-12-17 2005299410 17 Dec 2010 DEC.17.2010 09:49 #6812 P.010 /021 modifying the audio signal in response to the received modi fication parameters in order to reduce the difference between the particular loudness characteristic of the audio signal and the target specific loudness. 5
  3. 3
    A method for controlling a particular loudness characteristic of an audio signal, wherein the particular loudness characteristic is either the specific loudness, which is a measure on a linear scale of perceptual loudness as a 1 unction of frequency and time, or the partial specific loudness, which is a measure on a linear scale of perceptual loudness of the audio signal in the presence of a secondary interfering 10 signal as a function of frequency and time, comprising a) deriving, as a function of the audio signal, a target specific loudness, b) deriving frequency- and time-variant modification parameters usable for modifying the audio signal in order to reduce the difference between its particular loudness characteristic and the target specific loudness, 15 c) transmitting or storing the modification parameters and the audio signal, d) receiving the transmitted or reproducing the stored modification parameters and the audio signal, and e) modifying the audio signal in response to the received or reproduced modification parameters in order to reduce the difference between, the loudness 20 characteristic of the audio signal and the target specific loudness, wherein the execution of steps d) and e) is temporally separated and/or spatially separated from that of steps a) to c).
  4. 4
    A method according to any one of claims 1-3 wherein said deriving, as a function of 25 the audio signal, a target specific loudness or said deriving frequency- and timevariant modification parameters includes processing that explicitly calculates specillc loudness and/or partial specific loudness,
  5. 5
    A method according to any one of claims 1-3 wherein said deriving, as a function of 30 the audio signal, a target specific loudness or said deriving frequency- and timevariant modification parameters includes processing that implicitly calculates specific loudness and/or partial specific loudness. COMS ID No:ARCS-303612 Received by IP Australia: Time (H:m) 10:01 Date (Y-M-d) 2010-12-17 2005299410 17 Dec 2010 DEC.17.2010 09:49 #6812 P.011 /021 66 .
  6. 8
    A method according to any one of claims 1 -7 wherein function of the audio signal 10 used for deriving said target spec! lie loudness comprises one or more scalings of the audio signal.
  7. 10
    producing employs a lookup table that inherently determines (1) specific loudness, and/or (2) partial specific loudness, and/or (3) the target specific loudness. 46. A method according to claim 45 wherein said modifying, said deriving, or said producing employs a closed-form mathematical expression that inherently determines 15 (1) specific loudness, (2) and/or partial specific loudness, and/or (3) the target specific loudness. 47. A method according to any one of claims 1 -46 wherein said modification parameters are temporally smoothed. 20 . 48. A method according to claim 47 wherein said modification parameters comprise a plurality of amplitude scaling factors relating to frequency bands ofthe audio signal. 49. Λ method according to claim 48 wherein at least some ofthe plurality of amplitude 25 scaling factors arc time-varying. 50. Λ method according to claim 47 wherein said modification parameters include a plurality of filter coefficients for controlling one or more filters. 30 51. A method according to claim 50 wherein al least some of the one or more filters are Lime-varying and at least some of said filter coefficients are time-varying. 52. A method according to any one of claims 1-51 wherein said modifying, said deriving, or said producing is dependent on one or more of COMS ID No:ARCS-303612 Received by IP Australia: Time (H:m) 10:01 Date (Y-M-d) 2010-12-17 DEC.17.2010 09:51 #6812 P.018 /021 2005299410 17 Dec 2010 73 ' a measure of an interfering audio signal, a target specific loudness, an estimate of the specific loudness of the unmodi lied audio signal derived from the specific loudness or partial specific loudness of die modified audio signal, 5 the specific loudness of the unmodified audio signal, and an approximation to the target specific loudness derived from the specific loudness or partial specific loudness of the modified audio signal. 53. A method according to any one of claims 1-51 wherein said modifying or said 10 deriving derives modification parameters at least in part from one or more of a measure of an interfering audio signal, a target specific loudness, an estimate of the specific loudness of the unmodified audio signal derived from the specific loudness or partial specific loudness of the modified audio signal, 15 the specific loudness of the unmodified audio signal, and an approximation to the target specific loudness derived from the specific loudness or partial specific loudness of the modified audio signal. 54. A method according to claim 53 wherein said modifying or said deriving derives 20 modification parameters at least in part from (1) one of a target specific loudness, and an estimate of the specific loudness of the unmodified audio signal received from the specific loudness of the modified audio signal, and 25 (2) one of the specific loudness of the unmodified audio signal, and an approximation to the target specific loudness derived from the specific loudness of the modified audio signal. 30 55. A method according to claim 53 wherein said modifying or said deriving derives modification parameters at least in part from (1) a measure of an interfering audio signal, (2) one of a target specific loudness, and COMS ID No: ARCS-303612 Received by IP Australia: Time (H:m) 10:01 Date (Y-M-d) 2010-12-17 DEC.17.2010 09:51 #6812 P.019 /021 2005299410 17 Dec 2010 an estimate of the specific loudness of the unmodified audio signal derived from the partial specific loudness of the modified audio signal, and . (3) one of the specific loudness of the unmodified audio signal, and 5 an approximation to the target specific loudness derived from the partial specific loudness of the modified audio signal. 56. A method according to claim 54 or claim 55 wherein the method employs a feedforward arrangement in which the sped lie loudness is derived from the audio signal 10 and wherein the target specific loudness is received from a source external to the method or from a storing when the modi lying or deriving includes storing a target specific loudness. 57. A method according to claim 54 or claim 55 wherein the method employs a hybrid 15 fccd-forward/fccdback arrangement in which an approximation to the target specific loudness is derived from the modified audio signal and wherein the target specific loudness is received from a source external to the method or from a storing when the modifying or deriving includes storing a target specific loudness. 20 58. A method according to claim 54 or claim 55 wherein the modifying or deriving includes one or more processes for obtaining, explicitly or implicitly, the target specific loudness, one or ones of which calculates, explicitly or implicitly, said function of the audio signal or measure of the audio signal. 25 59, A method according to claim 58 wherein the method employs a feed-forward arrangement in which the specific loudness and the target specific loudness are derived from the audio signal, the derivation of the target specific loudness employing said function of the audio signal or measure of the audio signal. 30 60. A method according to claim 58 wherein the method employs a hybrid feedforward/fccdback arrangement in which an approximation to the target specific loudness is derived from the modified audio signal and the target, specific loudness is derived from the audio signal, the derivation of the target specific loudness employing said function of the audio signal or measure of the audio signal. COMS ID No: ARCS-303612 Received by IP Australia: Time (H:m) 10:01 Date (Y-M-d) 2010-12-17 DEC.17.2010 09:51 #6812 P.020 /021 2005299410 17 Dec 2010 75 . 61. A method according to claim 54 or claim 55 wherein the modifying or deri ving includes one or more processes for obtaining, explicitly or implicitly, an estimate of the specific loudness of the unmodified audio signal in response to the modified audio 5 signal, one or ones of which calculates, explicitly or implicitly, the inverse of said function of the audio signal or measure of the audio signal. 62. A method according to claim 61 wherein the method employs a feedback arrangement in which an estimate of the sped lie loudness of the unmodified audio signal and an 10 approximation to the target specific loudness are derived from file modified audio signal, the estimate of the specific loudness being calculated using the inverse of said function of the audio signal or measure of the audio signal. 63. A method according to claim 61 wherein the method employs a hybrid feed- 15 forward/fccdback arrangement in which, the specific loudness is derived from the audio signal and the estimate of the specific loudness of the unmodified audio signal is derived from the modified audio signal, the derivation of the estimate being calculated using the inverse of said function of the audio signal or measure of the audio signal. 64. Apparatus adapted to perform all steps of the method of any one of claims 1 through 63, 65. A computer program, stored on a computer-readable medium adapted to cause a 25 computer to perform all the steps of the method of any one of claims 1 through 63. COMS ID No: ARCS-303612 Received by IP Australia: Time (H:m) 10:01 Date (Y-M-d) 2010-12-17