Claims
- 1. A digital hearing aid comprising:
- a microphone operable to receive an input sound signal and to generate a digital input signal in response;
- a control and modeling circuitry operable to filter and amplify the digital input signal and to perform feedback neutralization and feedback path modeling to generate a digital output signal, said control and modeling circuitry including
- a first summing junction operable to subtract an output sound signal feedback component from the digital input signal to generate a feedback neutralized input signal,
- an amplifier and shaping filter operable to filter and amplify the feedback neutralized input signal and to generate a generated output signal in response,
- a modeling signal generator operable to generate a modeling signal,
- a second summing junction operable to combine the generated output signal with the modeling signal to generate the digital output signal,
- a feedback path modeling adaptive filter operable to receive the modeling signal and a modeling error signal and to filter the modeling signal to generate an output signal,
- a signal discrimination circuitry operable to receive the feedback neutralized input signal and to generate a modified modeling signal,
- a third summing junction operable to subtract the output signal from the modified modeling signal to generate the modeling error signal which is provided to an adaptive algorithm used by the feedback path modeling adaptive filter, and
- a feedback neutralization filter operable to receive the generated output signal and to generate a signal containing the output sound signal feedback component that is provided to the first summing junction, and wherein the adaptive algorithm used by the feedback path modeling adaptive filter is operable to calculate filter taps of the feedback path modeling adaptive filter to minimize the mean-square value of the modeling error signal, and the filter taps are provided to the feedback neutralization filter and used by the feedback neutralization filter to generate the signal containing the output sound signal feedback component; and
- a receiver operable, receive the digital output signal and to generate an output sound signal in response.
- 2. The digital hearing aid of claim 1, wherein the control and modeling circuitry further includes:
- a fourth summing junction operable to subtract the modified modeling signal from the feedback neutralized input signal to generate a processed input signal, and wherein the amplifier and shaping filter is operable to receive the processed input signal and to filter and amplify the processed input signal to generate the generated output signal.
- 3. The digital hearing aid of claim 1, further comprising a receiver tube coupled to the receiver and operable to receive the output sound signal and to provide the output sound signal to a user of the digital hearing aid.
- 4. A control and modeling circuitry for filtering and amplifying a digital input signal while performing feedback neutralization and feedback path modeling to generate a digital output signal, the control and modeling circuitry comprising:
- a first summing junction operable to subtract an output sound signal feedback component from the digital input signal to generate a feedback neutralized input signal;
- an amplifier and shaping filter operable to filter and amplify the feedback neutralized input signal and to generate a generated output signal in response;
- a modeling signal generator operable to generate a modeling signal;
- a second summing junction operable to combine the generated output signal with the modeling signal to generate the digital output signal;
- a feedback path modeling adaptive filter operable to receive the modeling signal and a modeling error signal and to filter the modeling signal to generate an output signal;
- a signal discrimination circuitry operable to receive the feedback neutralized input signal and to generate a modified modeling signal;
- a third summing junction operable to subtract the output signal from the modified modeling signal to generate the modeling error signal which is provided to an adaptive algorithm used by the feedback path modeling adaptive filter; and
- a feedback neutralization filter operable to receive the generated output signal and to generate a signal containing the output sound signal feedback component that is provided to the first summing junction, and wherein the adaptive algorithm used by the feedback path modeling adaptive filter is operable to calculate filter taps of the feedback path modeling adaptive filter to minimize the mean-square value of the modeling error signal, and the filter taps are provided to the feedback neutralization filter and used by the feedback neutralization filter to generate the signal containing the output sound signal feedback component.
- 5. The control and modeling circuitry of claim 4, further comprising:
- a fourth summing junction operable to subtract the modified modeling signal from the feedback neutralized input signal to generate a processed input signal, and wherein the amplifier and shaping filter is operable to receive the processed input signal and to filter and amplify the processed input signal to generate the generated output signal.
- 6. The control and modeling circuitry of claim 4, wherein the signal discrimination circuitry includes:
- a decorrelation delay unit operable to delay the feedback neutralized input signal and to provide a delayed feedback neutralized input signal;
- an adaptive discrimination filter operable to receive the delayed feedback neutralized input signal and the modified modeling signal and to filter the delayed feedback neutralized input signal to generate a predicted noise signal; and
- a fourth summing junction operable to subtract the predicted noise signal from the feedback neutralized input signal to generate the modified modeling signal.
- 7. The control and modeling circuitry of claim 6, wherein the delay of the decorrelation delay unit is a programmable delay.
- 8. The control and modeling circuitry of claim 6, wherein the delay of the decorrelation delay unit is equal to or greater than the delay of the feedback path being modeled.
- 9. The control and modeling circuitry of claim 4, wherein the adaptive algorithm used by the feedback path modeling adaptive filter uses a least-means-square adaptive algorithm.
- 10. A method for modeling the feedback path of a digital hearing aid, the method comprising the steps of:
- receiving a digital input signal;
- generating a modeling signal;
- generating filter taps for use in a feedback neutralization filter using the modeling signal and a modified modeling signal;
- generating a feedback neutralized input signal using the feedback neutralization filter and the digital input signal;
- generating the modified modeling signal using the feedback neutralized input signal using a digital delay that is equal to or greater than the delay of the feedback path;
- generating a generated output signal by filtering and amplifying the feedback neutralized input signal; and
- generating a digital output signal using the generated output signal and the modeling signal.
RELATED APPLICATIONS
This application claims priority under 35 USC 119(e) (1) of provisional application number 60/033,105, filed Dec. 17, 1996.
This application is related to the following co-pending U.S. Provisional Applications: Ser. No. 60/033,458 filed Dec. 17, 1996, now U.S. Pat. No. 5,940,519 entitled Active Noise Control System and Method for On-Line Feedback Path Modeling and On-Line Secondary Path Modeling; Ser. No. 60/033,104 filed Dec. 17, 1996, now U.S. patent application Ser. No. 08/992,699 filed Dec. 17, 1997 entitled Off-Line Feedback Path Modeling Circuitry and Method for Off-Line Feedback Path Modeling; Ser. No. 60/033,106 filed Dec. 17, 1996, now U.S. patent application Ser. No. 08/991,726 filed Dec. 16, 1997 entitled Active Noise Control System and Method for On-Line Feedback Path Modeling; and Ser. No. 60/033,107 filed Dec. 17, 1996, now U.S. patent application Ser. No. 08/992,933 filed Dec. 17, 1997 entitled Off-Line Path Modeling Circuitry and Method for Off-Line Feedback Path Modeling and Off-Line Secondary Path Modeling.
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