Claims
- 1. A spectrum enhancement system comprising:
a plurality of distributed filters, at least one of said filters for receiving a multi-frequency input signal; a plurality of energy detection units, each of which is coupled to an output of at least one filter and each of which provides an energy detection output signal; a weighted averaging unit that is coupled to each of said energy detection units and that provides a weighted averaging signal to each of said filters responsive to the energy detection output signals from each of said energy detection units.
- 2. The system as claimed in claim 1, wherein said weighted averaging signal is a non-linear signal.
- 3. The system as claimed in claim 1, wherein said plurality of energy detection units are coupled to the outputs of the filters via a plurality of differentiator units, each of which is coupled to an output of each of said filters and to one of said energy detection units.
- 4. The system as claimed in claim 1, wherein said differentiator units provide double differentiation.
- 5. The system as claimed in claim 1, wherein said energy detection units provide envelope detection.
- 6. The system as claimed in claim 1, wherein the multi-frequency signal is an auditory signal.
- 7. The system as claimed in claim 6, wherein said system is used with a cochlear implant.
- 8. The system as claimed in claim 1, wherein the multi-frequency signal is an electromagnetic signal.
- 9. The system as claimed in claim 1, wherein said weighted averaging signal is obtained by linear spatial filtering followed by a nonlinear unit.
- 10. A spectrum enhancement system comprising:
at least two filters hj and hj+1 for receiving a multi-frequency input signal; at least two energy detection units, each of which is coupled to an output of a filter and each of which provides an energy detection output signal ej and ej+1 respectively; and a weighted-averaging unit that is coupled to each of said energy detection units and that provides a weighted-averaging signal Ij to a non-linear unit responsive to each of said energy detection output signals ej and ej+1; said non-linear unit providing a resonant gain signal Qj to said filter hj responsive to said weighted-averaging signal Ij.
- 11. The system as claimed in claim 10, wherein said energy detection units are coupled to the outputs of the filters via a plurality of differentiator units, each of which is coupled to an output of each of said filters and to one of said energy detection units.
- 12. The system as claimed in claim 10, wherein said differentiator units provide double differentiation.
- 13. The system as claimed in claim 10, wherein said energy detection units provide envelope detection.
- 14. The system as claimed in claim 10, wherein the multi-frequency signal is an auditory signal.
- 15. The system as claimed in claim 14, wherein said system is used with a cochlear implant.
- 16. The system as claimed in claim 10, wherein the multi-frequency signal is an electromagnetic signal.
- 17. The system as claimed in claim 10, wherein said weighted-averaging signal is obtained by linear spatial weighting.
- 18. A spectrum enhancement system comprising:
a plurality of serially distributed low pass filters, the first of which receives a multi-frequency input signal; a plurality differentiator units, each of which is coupled to an output of a low pass filter and each of which provides a differentiator output signal; a plurality of energy detection units, each of which is coupled to an output of a differentiator unit and each of which provides an energy detection output signal; a weighted averaging unit that is coupled to each of said energy detection units and that provides a weighted averaging signal to each of said low pass filters responsive to the energy detection output signals from each of said energy detection units.
- 19. A system as claimed in claim 18, wherein said differentiator units provide a double differentiator function.
- 20. A system as claimed in claim 18, wherein said differentiator units provide a unity differentiator function.
- 21. A method of providing spectral enhancement, said method including the steps of:
receiving a multi-frequency signal at a first low pass filter hj and receiving an output of said first low pass filter at a second low pass filter hj+1; providing a first energy detection signal ej responsive to the output of said first low pass filter; providing a second energy detection signal ej responsive to the output of said second low pass filter; providing a weighted averaging signal Ij to a non-linear gain unit responsive to each of said energy detection output signals ej and ej+1; and providing a resonant gain signal Qj to said low pass filter hj responsive to said weighted averaging signal Ij.
- 22. The method as claimed in claim 21, wherein said method further includes the step of differentiating the output signals from each of said low pass filters hj and hj+1.
Parent Case Info
[0001] The present application claims priority to U.S. Provisional Patent Application Ser. No. 60/398,253 filed Jul. 24, 2002.
Provisional Applications (1)
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Number |
Date |
Country |
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60398253 |
Jul 2002 |
US |