EP2563045A1

A method and a binaural listening system for maximizing a better ear effect

Abstract

The application relates to a method of processing audio signals from a sound field picked up by a microphone system of a binaural listening system comprising left and right listening devices adapted for being worn at a left and right ear, respectively, of a user, the sound field comprising sound signals from one or more sound sources, the sound signals impinging on the user from one more directions relative to the user, the left and right listening devices comprising transceivers for establishing a communication link between them. The application further relates to a binaural listening system. The object of the present application is to provide an improved sound localization for a user of a binaural listening system. The problem is solved in that information about a user's hearing ability is used to determine a number of target frequency bands, a dynamic separation of sound signals from the one or more sound sources is performed, and an SNR-measure indicating a strength of a selected signal relative to other signals of the sound field is dynamically determined. A better-ear-effect measure for the left and right listening devices, respectively, is calculated as a difference between the values of the SNR-measure for the selected signal for the left and right listening devices, whereby a number of donor frequency bands of the selected signal, where the better-ear-effect measure for the selected signal - at a given time - is above a predefined threshold value, can be identified. Finally, a donor frequency band of the selected signal is transposed in the left and/or right listening devices to a target frequency band, if a predefined transposition criterion is fulfilled. This has the advantage of providing improved speech intelligibility for a hearing impaired user, which is dynamically adapted to the current acoustic environment of the user. The invention may e.g. be used in hearing aid systems for compensating a user's hearing impairment.

EP2563045A1, drawing sheet 1
Sheet 1 of 39

Term

4.9 yearsto projected expiry

Projected expiry 23 August 2031, counted from filing; an application has no term until it is granted.

  1. Priority and filed
  2. Published
  3. Today
  4. Projected expiry

15 claims: 10 independent, 5 dependent

  1. 1
    A method of processing audio signals from a sound field picked up by a microphone system of a binaural listening system comprising left and right listening devices adapted for being worn at a left and right ear, respectively, of a user, the sound field comprising sound signals from one or more sound sources, the sound signals impinging on the user from one more directions relative to the user, the left and right listening devices comprising transceivers for establishing a communication link between them, the method comprising b1) providing information about a user's hearing ability depending on the frequency of a sound signal; b2) determining a number of target frequency bands, for which the user's hearing ability fulfils a predefined hearing ability criterion; and performing steps c1)-c3) for each of the left and right listening devices located at the left and right ears, respectively, of a user:c1) providing a dynamic separation of sound signals from the one or more sound sources depending on time, frequency and direction of origin of the sound signals relative to the user;c2) selecting a signal among the dynamically separated sound signals;c3) determining an SNR-measure indicating a strength of the selected signal relative to other signals of the sound field for the selected signal and listening device depending on time, frequency and direction of origin of the selected signal relative to the user and on the location and mutual strength of the sound sources;and performing steps c4bin)-d) in at least one of the left and right listening devices: c4bin) determining a better-ear-effect measure for the left listening device as a difference between the values of the SNR-measure for the selected signal for the left and right listening devices, respectively, and/or determining a better-ear-effect measure for the right listening device as a difference between the values of the SNR-measure for the selected signal for the right and left listening devices, respectively;c5bin) determining in the left and/or right listening devices a number of donor frequency bands of the selected signal at a given time, where the better-ear-effect measure for the selected signal is above a predefined threshold value;d) transposing in the left and/or right listening devices a donor frequency band of the selected signal - at a given time - to a target frequency band, if a predefined transposition criterion is fulfilled.
  2. 4
    A method according to any one of claims 1-3 wherein in step c2) a target signal is chosen among the dynamically separated sound signals, and wherein step d) is performed for the target signal, and wherein all other detected signal sources than the target signal are considered as noise.
  3. 7
    A method according to any one of claims 1-12 wherein signal components that are not attributed to one of the dynamically separated sound signals are considered as noise.
  4. 8
    A method according to any one of claims 1-7 wherein step d) comprises substitution of the magnitude and/or phase of the target frequency band with the magnitude and/or phase of a donor frequency band.
  5. 9
    A method according to any one of claims 1-8 wherein donor frequency bands are selected above a predefined minimum donor frequency and wherein target frequency bands are selected below a predefined maximum target frequency.
  6. 11
    A method according to any one of claims 1-10 wherein in step b2) a target frequency band is determined as a band for which a user has the ability to correctly decide on which ear the level is the larger, when sounds of different levels are played simultaneously to the user's left and right ears.
  7. 12
    A method according to any one of claims 1-11 wherein target frequency bands that contribute poorly to the wearer's current spatial perception and speech intelligibility are determined, such that their information may be substituted with the information from a donor frequency band.
  8. 13
    A method according to any one of claims 1-12 wherein step d) is operated synchronously in the left and right listening devices.
  9. 14
    A binaural listening system comprising left and right listening devices adapted for being worn at, respectively, left and right ears of a user, each listening device comprising a microphone system for picking up sounds from a sound field comprising sound signals from one or more sound sources, the sound signals impinging on the user from one more directions relative to the user, the left and right listening devices comprising transceivers for establishing a communication link between them, and the listening system being adapted to process audio signals picked up by the microphone systems of the left and right listening devices according to the method of any one of claims 1-13.
  10. 15
    A tangible computer-readable medium storing a computer program comprising program code means for causing a data processing system to perform at least some of the steps of the method of any one of claims 1-13, when said computer program is executed on the data processing system.