IP Library Granted Patent US 7,089,176
Granted Patent B2
US 7,089,176 · App. 10/400,845 · Granted Aug 8, 2006

Method and system for increasing audio perceptual tone alerts

View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 7,089,176
App. No.
10/400,845
Granted
Aug 8, 2006
Kind
B2
Abstract

A method, system and computer readable medium for increasing the audio perceptual loudness includes shifting at least one frequency of a first audio signal to create a second audio signal so as to increase the audio perceptual loudness. The power level of the second audio signal is not more than a power level of the first audio signal. The method also includes generating high-audio perceptual loudness tone alert sequences based on psychoacoustic and audiometric data. It further includes acquiring a listener's threshold audio profile; adding the listener's audio profile to the loudness sensitivity curve for producing the listener's tonal sensitivity curve; determining a required dB scaling for critical band tones from the listener's tonal sensitivity curve; normalizing the tonal sensitivity curve for creating a decibel curve; selecting a frequency range of the tones by using the tonal sensitivity curve; and spacing the sequence of tones along a critical band scale.

Claims (44)

1. In an end user device, a method for increasing the audio perceptual loudness, the method comprising:

shifting at least one frequency of a first audio signal by at least one critical band distance along a critical band scale to create a second audio signal so as to increase the audio perceptual loudness, a power level of the second audio signal being not more than a power level of the first audio signal;

generating high-audio perceptual loudness tone alert sequences based on psychoacoustic and audiometric data;

generating an audio speaker frequency response curve for a given volume setting and speaker;

selecting an equal loudness reference curve corresponding to a lowest frequency response dB level in a 3-dB bandwidth range of the frequency response curve; and

creating a loudness sensitivity curve for a given audio speaker response by subtracting the equal loudness reference curve from the audio speaker frequency response curve.

2. The method of claim 1 , further comprising:

acquiring a listener's threshold audio profile;

adding the listener's audio profile to the loudness sensitivity curve for producing the listener's tonal sensitivity curve;

determining a required dB scaling for critical band tones from the listener's tonal sensitivity curve; and

normalizing the tonal sensitivity curve for creating a dB curve.

3. A computer readable medium comprising computer instructions for increasing the audio perceptual loudness, comprising:

shifting at least one frequency of a first audio signal by at least one critical band distance along a critical band scale to create a second audio signal so as to increase the audio perceptual loudness, a power level of the second audio signal being not more than a power level of the first audio signal;

generating high-audio perceptual loudness tone alert sequences based on psychoacoustic and audiometric data

generating an audio speaker frequency response curve for a given volume setting and speaker;

selecting an equal loudness reference curve corresponding to a lowest frequency response dB level in a 3-dB bandwidth range of the frequency response curve; and

creating a loudness sensitivity curve for a given audio speaker response by subtractine the equal loudness reference curve from the audio speaker frequency response curve.

4. The computer readable medium of claim 3 , further comprising computer instructions for:

acquiring a listener's threshold audio profile;

adding the listener's audio profile to the loudness sensitivity curve for producing the listener's tonal sensitivity curve;

determining a required dB scaling for critical band tones from the listener's tonal sensitivity curve; and

normalizing the tonal sensitivity curve for creating a dB curve.

5. The computer readable medium of claim 4 , wherein the listener's threshold audio profile indicates the listener's hearing acuity in terms of tone thresholds and further indicates the dB gain necessary for the listener for hearing given tones.

6. The computer readable medium of claim 3 , further comprising computer instructions for:

using a ceiling profile for stating dB differences for increased audio perceptual tones.

7. An end user device for increasing the audio perceptual loudness, comprising:

an input interface for inputting a first audio signal;

a frequency shifter/processor coupled to the input interface for shifting/processing at least one frequency of the first audio signal by at least one critical band distance along a critical band scale to create a second audio signal so as to increase the audio perceptual loudness, a power level of the second audio signal being not more than a power level of the first audio signal; and

an output interface coupled to the frequency shifter/processor for outputting the second audio signal;

means for generating high-audio perceptual loudness tone alert sequences based on psychoacoustic and audiometric data;

means for generating an audio speaker frequency response curve for a given volume setting and speaker;

means for selecting an equal loudness reference curve corresponding to a lowest frequency response dB level in a 3-dB bandwidth range of the frequency response curve; and

means for creating a loudness sensitivity curve for a given audio speaker response by subtracting the equal loudness reference curve from the audio speaker response curve.

8. The end user device according to claim 7 , further comprising:

a controller for controlling operations of the frequency shifter/processor; and

a memory coupled to the controller.

9. The end user device according to claim 7 , further comprising:

means for acquiring a listener's threshold audio profile;

means for adding the listener's audio profile to the loudness sensitivity curve for producing the listener's tonal sensitivity curve; and

means For normalizing the tonal sensitivity curve for creating a dB curve.

10. The end user device according to claim 9 , wherein the means for acquiring the listener's threshold audio profile includes an indication of the listener's hearing acuity in terms of tone thresholds and further indicates the dB gain necessary for the listener for hearing given tones.

11. The end user device according to claim 9 , wherein the means for acquiring the listener's threshold audio profile includes:

means for presenting a given configuration routine; and

means for receiving the user's selection.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 21, 2014
From: MOTOROLA MOBILITY LLC
To: GOOGLE TECHNOLOGY HOLDINGS LLC
Reel/Frame 034417/0001 →
CHANGE OF NAME Recorded Oct 2, 2012
From: MOTOROLA MOBILITY, INC.
To: MOTOROLA MOBILITY LLC
Reel/Frame 029216/0282 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 13, 2010
From: MOTOROLA, INC
To: MOTOROLA MOBILITY, INC
Reel/Frame 025673/0558 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 27, 2003
From: BOILLOT, MARC ANDRE; ANSON, DENNIS; PATTERSON, AUDLEY F.
To: MOTOROLA, INC.
Reel/Frame 013919/0345 →