Claims
- 1. A device for abating traffic noise, comprising, in combination:
- a plurality of transducers oriented in an array strategically placed proximate a source of noise pollution and physically detached therefrom,
- means in each said transducer to alter a pressure wave emanating from said source and for selective projection of certain waves from each transducer to correlate with portions of the noise being treated, and
- means coupled to each transducer for orchestrating a sequence in which plural said transducers are enabled.
- 2. The device of claim 1 wherein said plurality of said transducer are oriented in a single row adjacent a highway thereby defining said array with every other transducer in said single row in phase and the remaining transducers 180.degree. out of phase to oppose vehicular noise on the highway.
- 3. A method for abating traffic noise pollution, the steps including;
- determining a signature of the traffic noise pollution,
- determining a radiating pattern of the traffic noise pollution,
- orienting an array of transducers strategically adjacent a highway carrying said traffic for meeting a pressure wave which emanates from the traffic, and
- projecting an active pressure wave from the array of transducers to meet with the pressure wave of the traffic noise pollution to alter the profile of the traffic noise pollution produced by vehicles on said highway.
- 4. The method of claim 3 further including sequencing certain transducers in the array to operate in synchrony and other transducers to operate 180.degree. out of phase.
- 5. A transducer for use in attenuating a noise pressure wave emanating from a source comprising in combination:
- means for supporting said transducer adjacent a highway,
- means formed with the transducer and including at least one diaphragm for inducing a corrective pressure wave,
- means for orienting the corrective pressure wave from the transducer towards the source of noise, and
- means for altering a characteristic of the corrective pressure wave emanating form the transducer specific to a signature of the noise pressure wave emanating from the source of noise.
- 6. The transducer of claim 5 wherein said diaphragm has drive means operatively coupled thereto.
- 7. The transducer of claim 6 wherein said drive means includes at least one current carrying coil operatively coupled to a drive rod which in turn is operatively coupled to said diaphragm.
- 8. The transducer of claim 7 wherein said drive means further includes means for providing a constant magnetic field in which said coil is located.
- 9. A transducer for use in attenuating a noise pressure wave emanating from a source comprising in combination:
- means formed with the transducer for inducing a corrective pressure wave,
- means for orienting the corrective pressure wave from the transducer towards the source of noise, and
- means for altering a characteristic of the corrective pressure wave emanating from the transducer specific to a signature of the noise pressure wave emanating from the source of noise,
- said means for inducing a corrective pressure wave includes at least one diaphragm,
- said diaphragm has drive means operatively coupled thereto,
- said drive means includes at least one current carrying coil operatively coupled to a drive rod which in turn is operatively coupled to said diaphragm,
- said drive means further includes means for providing a constant magnetic field in which said coil is located, and
- means for supporting said transducer adjacent a highway.
- 10. The transducer of claim 9 wherein a pair of said diaphragms is located within said transducer, said diaphragms oriented to form in section a substantially V shaped configuration and said diaphragms adapted to move about an arc of a circle between opening and closing, each said diaphragm operatively coupled to an independent said drive means and to operate in synchrony with each other whereby each said diaphragm moves towards or away from each other in concert.
- 11. The transducer of claim 10 wherein said transducer has a housing configured as a cylinder having a long axis oriented substantially vertically and said cylinder has a closed top wall, a closed bottom wall and a perforated peripheral skin circumscribing said transducers and a crossmember bisects said cylindrical transducer about a vertical axis of symmetry.
- 12. The transducer of claim 11 wherein said pair of diaphragms are operatively coupled to said crossmember substantially at said long axis of said transducer by a pair of hinge members allowing said diaphragms to move in an arc about said long axis.
- 13. The transducer of claim 12 wherein said transducer resides upon a footing having a peripheral ridge, a flange extending down from a lower most portion of said transducer peripheral skin and circumscribing said peripheral ridge and a bracket connected between said flange and said peripheral ridge including a horizontal portion adapted to reside on said peripheral ridge to fix and locate said transducer on said footing.
- 14. The transducer of claim 13 including an amplifier operatively coupled to said transducer to drive said diaphragms.
- 15. The transducer of claim 14 wherein each said drive means includes a coil, a coil guide disposed within said coil, said coil guide held in fixed relation by connection to said crossmember, means to reciprocate said coil between a first and second position, an arm connected to said coil and a drive rod connecting said arm to said diaphragm whereby said drive rod moves between a first and second position, and said coil guide supported between a pair of first and second side plates separated therefrom by spacer means, one said side plate connected to said crossmember.
- 16. The transducer of claim 15 wherein said drive means is connected in said transducer to a driver brace which extends between a floor of said transducer and a cap, and a spring is connected on said brace to said diaphragm to limit the range of motion of said diaphragm and urge said diaphragm to another position upon a change in the magnetic field.
- 17. A method for abating noise pollution, the steps including;
- determining a signature of the source of noise pollution,
- determining a radiating pattern of the source of noise pollution,
- orienting an array of transducers strategically adjacent the source of noise pollution for meeting a pressure wave which emanates from the source of noise pollution,
- projecting an active pressure wave from the array of transducers to meet with the pressure wave of the source of noise pollution to alter the profile of the noise pollution, and
- orienting the transducers adjacent a highway and directing the active pressure waves to oppose vehicular highway noise.
- 18. A transducer for use in attenuating a noise pressure wave emanating from a source comprising in combination:
- means formed with the transducer for inducing a corrective pressure wave,
- means for orienting the corrective pressure wave from the transducer towards the source of noise,
- means for altering a characteristic of the corrective pressure wave emanating from the transducer specific to a signature of the noise pressure wave emanating from the source of noise, and
- means for supporting said transducer adjacent a highway.
- 19. A device for abating noise, comprising, in combination:
- a plurality of transducers oriented in an array strategically placed adjacent a source of noise pollution,
- means in each said transducer to alter a pressure wave emanating from a source of the noise pollution, and
- means coupled to each transducer for orchestrating a sequence in which plural said transducers are enabled,
- means in each said transducer for selective projection of certain waves from each said transducer to correlate with portions of the noise to be treated,
- said plurality of said transducers are oriented in a single row adjacent a highway thereby defining said array with every other transducer in said single row in phase and the remaining transducers 180.degree. out of phase to oppose vehicular noise on the highway.
- 20. The device of claim 19 wherein said plurality of transducers includes a second row with transducers located in said second row at midpoints between transducers in said single row.
- 21. A device for abating noise produced by a moving object travelling in a path and causing pressure waves which carry audible sound, comprising in combination:
- a plurality of pressure wave producing transducers oriented in a static array strategically placed proximate said path and physically detached from said moving object, to produce a sequence of pressure waves which alter said pressure waves caused by said moving object to thereby abate said noise.
- 22. The device of claim 21 wherein said static array of transducers are oriented proximate a highway.
- 23. A method for abating noise produced by a moving object travelling in a path and generating a pressure wave carrying audible noise, comprising the steps of:
- a. producing a series of pressure waves from a location proximate said path and physically detached from said object; and,
- b. sequencing said series of said waves in cooperating phase relationships, so as to alter the pressure waves generated by said moving object, thereby abating said noise.
- 24. The method of claim 23 wherein said path is a highway.
Parent Case Info
This application is a continuation of application Ser. No. 08/165,247, filed Dec. 10, 1993, now abandoned.
US Referenced Citations (10)
Continuations (1)
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Number |
Date |
Country |
Parent |
165247 |
Dec 1993 |
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