Claims
- 1. An active noise control system for canceling noise, produced by a blower and propagating through a duct, at an exhaust port of the duct, comprising:
- first reception means disposed within the duct for receiving noise generated by the blower and outputting a noise signal in response thereto;
- sound generation means, responsive to a noise canceling signal, for generating noise canceling sound that cancels the noise generated by the blower at the exhaust port of the duct;
- second reception means for receiving the noise generated by the blower and the noise canceling sound generated by the sound generation means at the exhaust port of the duct and outputting a residual error signal in response thereto;
- first simulation means including a first digital signal processing unit for receiving a subtraction signal which simulates the noise produced by said blower and for outputting the noise canceling signal to said sound generation means in response thereto;
- first controlling means for controlling the first simulation means to update the noise canceling signal in response to the residual error signal output by the second reception means;
- second simulation means including a second digital signal processing unit different from the first processing unit for receiving the noise canceling signal output from said first simulation means and for outputting a detouring sound simulating signal which simulates the noise canceling sound produced by said sound generation means as received by said first reception means through said duct;
- second controlling means for controlling the second simulation means to update the detouring sound simulating signal in response to the subtraction signal; and
- subtraction means for subtracting the detouring sound simulating signal output by said second simulation means from the noise signal output by said first reception means and for outputting the subtraction signal in response thereto.
- 2. An active noise control system according to claim 1, wherein:
- said duct includes a single suction port of cool air and is branched into a plurality N of branch ducts from an intermediate part thereof, each of said branch ducts extending to a respective exhaust port by way of a separate heat source; and
- said first simulation means, said second simulation means, said sound generation means, and said second reception means each respectively include means respectively corresponding to each of the plurality N of said branch ducts; and
- said subtraction means subtracts detouring signals output by the means of said second simulation means which respectively correspond to each of the plurality N of said branch ducts from the noise signal output by said first sound reception means and outputs a result to each of the means of said first simulation means which respectively correspond to the plurality N of said branch ducts.
- 3. An active noise control system according to claim 1, wherein said predetermined communication means includes means for directly interrupting the second digital signal processing unit when communicating with the first digital signal processing unit.
- 4. An active noise control system according to claim 1, wherein said predetermined communication means includes means for communicating with the second digital signal processing unit by monitoring an existence flag of data to be communicated by the first digital signal processing unit.
- 5. An active noise control system for actively eliminating noise generated by a blower at an exhaust port of a duct comprising:
- a first reception device disposed in proximity to said blower for receiving noise generated by said blower and a detouring sound, and outputting an analog noise signal in response thereto;
- a sound generation device for generating a noise canceling sound in response to a noise canceling sound generation signal;
- first conversion means for converting the analog noise signal output by said first reception device into a digital noise signal;
- a first digital filter, having a first filter coefficient, for receiving a subtraction result and outputting a digital noise simulating signal simulating the noise generated by said blower in response thereto;
- second conversion means for converting the digital noise simulating signal output by said first digital filter into said noise canceling sound generation signal and for outputting the noise canceling sound generation signal to said sound generation device;
- a second digital filter, having a second filter coefficient, for receiving as input the digital noise simulating signal output by said first digital filter and outputting a detouring sound simulating signal in response thereto to simulate the detouring sound, wherein the detouring sound is the noise canceling sound generated from said sound generation device when received by said first sound reception device through said duct;
- subtraction means for subtracting the detouring sound simulating signal output by said second digital filter from the digital noise signal output by said first conversion means and for outputting the subtraction result in response thereto;
- second updating means, receiving as input the subtraction result output by said subtraction means, for updating the second filter coefficient of said second digital filter in response thereto during active noise elimination;
- a second reception device disposed in proximity to said exhaust port of said duct for receiving residual noise and outputting an analog residual noise signal in response thereto;
- third conversion means for converting the analog residual noise signal output by said second reception device into a digital residual noise signal; and
- first updating means, receiving as input the digital residual noise signal output by said third conversion means, for updating the first filter coefficient of said first digital filter in response thereto during active noise elimination.
- 6. An active noise control system according to claim 5, wherein
- the duct includes a single suction port for receiving cool air, said duct being branched into a plurality N of branch ducts from an intermediate part thereof;
- each of said plurality N of branch ducts extends to a respective exhaust port by way of respective separate heat sources, said system further comprising a plurality N of first digital filters, second conversion means, sound generation devices, second sound reception devices, third conversion means, first updating means, second digital filters, and second updating means each corresponding to each of the plurality N of said branch ducts, respectively; and
- said subtraction means subtracts each of a plurality N of detouring sound simulating signals output respectively by said plurality N of said second digital filters from the digital noise signal output by said first conversion means and outputs a corresponding result to each of the plurality N of said first digital filters in response thereto.
- 7. An active noise control system according to claim 5, wherein said first digital filter and said second digital filter are comprised of respective first and second processing units, and communication between said processing units is effected by a predetermined method.
- 8. An active noise control system according to claim 7, further comprising means for directly interrupting the second digital signal processing unit during communication with the first digital signal processing unit.
- 9. An active noise control system with detouring sound apparatus according to claim 5, wherein the filter coefficient of said second digital filter is obtained by inputting a predetermined noise from a noise source to said sound generation apparatus and to said second digital filter and updating the filter coefficient by said second updating means in accordance with a predetermined algorithm so that the output of said subtraction means for the detouring sound becomes zero.
- 10. An active noise control system with detouring sound apparatus according to claim 9, wherein said predetermined noise is a white noise.
- 11. An active noise control system with detouring sound apparatus according to claim 9, wherein said predetermined algorithm is a learning determination method.
- 12. An active noise control system with detouring sound apparatus according to claim 9, wherein said predetermined algorithm is a least mean square method.
- 13. An active noise control system with detouring sound apparatus according to claim 9, wherein the filter coefficient of said first digital filter is obtained by fixing the filter coefficient of said digital filter obtained as described above, outputting a predetermined noise using a noise source in place of said blower, and updating a filter coefficient by said first updating means in accordance with a predetermined algorithm so that a residual noise signal from said second sound reception device becomes zero.
- 14. An active noise control system with detouring sound apparatus according to claim 13, wherein said predetermined noise is a white noise.
- 15. An active noise control system with detouring sound apparatus according to claim 13, wherein said predetermined algorithm is a learning determination method.
- 16. An active noise control system with detouring sound apparatus according to claim 13, wherein said predetermined algorithm is a least mean square method.
- 17. An active noise control system with detouring sound apparatus according to claim 13, wherein the filter coefficient of said second digital filter is determined only at the start of the operation of said apparatus and is fixed during the subsequent operation of apparatus, and the filer coefficient of said first digital filter is constantly updated during the operation of said apparatus.
- 18. An active noise control system comprising:
- a sensor transducer for receiving noise and outputting an electrical noise signal in response thereto;
- an error transducer for receiving error noise and outputting an electrical error noise signal in response thereto;
- a first simulation processor for outputting a first simulation signal during a first predetermined period in response to a received subtraction signal;
- first means for updating the first simulation processor to update the first simulation signal in response to the subtraction signal;
- an output transducer electrically connected to the first simulation processor for producing an acoustic vibration in response to the first simulation signal;
- a second simulation processor electrically connected in parallel with the first simulation processor and receiving the first simulation signal therefrom, for outputting a second simulation signal during a second predetermined period in response to the subtraction signal and the first simulation signal;
- second means for controlling the second simulation processor to update the second simulating signal in response to the subtraction signal; and
- subtraction means electrically connected to and communicating with the sensor transducer for subtracting the second simulation signal from the electrical noise signal and outputting the subtraction signal in response thereto.
Priority Claims (1)
Number |
Date |
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Kind |
5-027047 |
Feb 1993 |
JPX |
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Parent Case Info
This application is a continuation of application Ser. No. 08/197,844, filed Feb. 17, 1994, now abandoned.
US Referenced Citations (4)
Foreign Referenced Citations (2)
Number |
Date |
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0615224A2 |
Sep 1994 |
EPX |
2636189 |
Mar 1990 |
FRX |
Continuations (1)
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Number |
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197844 |
Feb 1994 |
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