Vehicle combustion noise-masking control apparatus and method using the same
US-2017130625-A1 · May 11, 2017 · US
US2017133003A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2017133003-A1 |
| Application number | US-201615341496-A |
| Country | US |
| Kind code | A1 |
| Filing date | Nov 2, 2016 |
| Priority date | Nov 6, 2015 |
| Publication date | May 11, 2017 |
| Grant date | — |
A practical reading order for non-experts. Skip the full description unless you need deep technical detail.
What the patent document calls the invention.
A short plain-language summary of the technical disclosure.
Who owns or filed the patent and who is credited as inventor.
Filing, priority, publication, and grant dates set the timeline.
The legal scope of protection — read this for what is actually claimed.
Technology tags used to group this patent with similar filings.
Prior art links and similar publications in this corpus.
Official abstract text for this publication.
A sound generator ( 100 ) mounts on a vehicle to manipulate vehicle noise originating from a vehicle operated by an internal combustion engine. The sound generator ( 100 ) includes a casing ( 110 ), a loudspeaker ( 120 ), and at least one pressure compensation valve ( 130 ). The loudspeaker ( 120 ) and the casing ( 110 ) together thereby enclose a volume ( 115 ). Further, the pressure compensation valve ( 130 ) couples the volume ( 115 ) enclosed by the loudspeaker ( 120 ) and the casing to an outside of the casing ( 110 ). The pressure compensation valve ( 130 ) thereby extends through a plane in which the loudspeaker ( 120 ) is located. A system ( 200 ) for manipulating sound waves propagating through exhaust systems of vehicles driven by an internal combustion engine uses the above sound generator ( 100 ).
Opening claim text (preview).
What is claimed is: 1 . A sound generator for mounting on a vehicle to manipulate vehicle noise, the sound generator comprising: a casing; a loudspeaker, the loudspeaker and the casing together enclosing a volume and the loudspeaker extending along a loudspeaker plane; and at least one pressure compensation valve, the pressure compensation valve coupling the volume enclosed by the loudspeaker and the casing with an outside of the casing and the pressure compensation valve extending through the loudspeaker plane. 2 . A sound generator according to claim 1 , wherein: the at least one pressure compensation valve comprises a valve body and a valve head; the valve body has a first end with a first opening formed therein that opens to the outside of the casing, and a second end with a second opening accommodating the valve head, the valve head being disposed inside the volume enclosed by the loudspeaker and the casing; and the valve head includes a through hole for air. 3 . A sound generator according to claim 2 , wherein the at least one pressure compensation valve is positioned in the casing and the valve body is dimensioned such that the valve head is disposed opposite the loudspeaker plane and is located at a maximum distance to the loudspeaker plane. 4 . A sound generator according to claim 2 , wherein the first opening of the valve body is located in the loudspeaker plane. 5 . A sound generator according to claim 2 , wherein the valve body includes an increased diameter section between the first opening and the second opening and a diameter of the increased section of the valve body is increased with respect to a diameter of the first opening or the second opening or both the the first opening and the second opening. 6 . A sound generator according to claim 5 , wherein the increased diameter section is fully or in part located inside the casing. 7 . A sound generator according to claim 2 , wherein a volume enclosed by the valve body between the first opening and the second opening amounts to between 1% and 20% of the volume enclosed by the loudspeaker and the casing. 8 . A sound generator according to claim 2 , wherein a volume enclosed by the valve body between the first opening and the second opening amounts to between 4% and 15% of the volume enclosed by the loudspeaker and the casing. 9 . A sound generator according to claim 2 , wherein the valve head comprises a membrane in a valve head interior, the membrane being permeable to air and impermeable to water and closing the through hole. 10 . A sound generator according to claim 2 , wherein the through hole of the valve head is a throttle enabling, at a constant pressure difference of 300 Pa and a passage of more than 2 liters of air per hour and less than 10 liters of air per hour. 11 . A sound generator according to claim 2 , wherein the through hole of the valve head is a throttle enabling, at a constant pressure difference of 300 Pa and a passage of more than 3 liters of air per hour and less than 9.0 liters of air per hour. 12 . A sound generator according to claim 2 , wherein the through hole of the valve head is a throttle enabling, at a constant pressure difference of 300 Pa and a passage of more than 4 liters of air per hour and less than 8 liters of air per hour. 13 . A sound generator according to claim 1 , wherein the valve body is formed integrally with the casing. 14 . A sound generator according to claim 2 , wherein the loudspeaker comprises: a loudspeaker basket; a membrane retained airtight by the loudspeaker basket; a permanent magnet retained by the loudspeaker basket; a voice coil retained by a voice coil carrier, the voice coil being located in a constant magnetic field generated by the permanent magnet and the voice coil being coupled to the membrane wherein: the loudspeaker basket is coupled airtight to the casing; and the valve body penetrates the loudspeaker basket or the valve body is coupled airtight to the loudspeaker basket with the first opening of the valve body being aligned with an opening formed in the loudspeaker basket. 15 . A sound generator according to claim 14 , wherein the valve body is integrally formed with the loudspeaker basket. 16 . A sound generator according to claim 1 , wherein the loudspeaker comprises: a loudspeaker basket; a membrane retained airtight by the loudspeaker basket; a permanent magnet retained by the loudspeaker basket; and a voice coil retained by a voice coil carrier, the voice coil being located in a constant magnetic field generated by the permanent magnet and being coupled to the membrane, wherein: the loudspeaker basket is coupled airtight to the casing; and the loudspeaker plane is oriented orthogonally to a main emission direction of sound emitted from the loudspeaker and is positioned between the voice coil and a section of the membrane furthermost from the voice coil. 17 . A system for manipulating sound waves propagating through an exhaust system of a vehicle driven by an internal combustion engine, the system comprising: a controller connected to an engine controller of the vehicle by a control line or built-in into the engine controller of the vehicle; and at least one sound generator comprising: a casing; a loudspeaker, the loudspeaker and the casing together enclosing a volume and the loudspeaker extending along a loudspeaker plane; and at least one pressure compensation valve, the pressure compensation valve coupling the volume enclosed by the loudspeaker and the casing with an outside of the casing and the pressure compensation valve extending through the loudspeaker plane; a control line connecting the loudspeaker to the controller, wherein the controller is configured to generate a control signal based on signals received from the engine controller and to output the control signal to the loudspeaker via the control line, the control signal being adapted to cancel the sound waves propagating through the exhaust system of the vehicle to some extent or completely, when the control signal is used to operate the loudspeaker. 18 . A system according to claim 17 , wherein: the at least one pressure compensation valve comprises a valve body and a valve head; the valve body has a first end with a first opening formed therein that opens to the outside of the casing, and a second end with a second opening accommodating the valve head, the valve head being disposed inside the volume enclosed by the loudspeaker and the casing; and the valve head includes a through hole for air. 19 . A system according to claim 18 , wherein the valve head comprises a membrane in a valve head interior, the membrane being permeable to air and impermeable to water and closing the through hole. 20 . A system according to claim 18 , wherein the loudspeaker comprises: a loudspeaker basket; a membrane retained airtight by the loudspeaker basket; a permanent magnet retained by the loudspeaker basket; a voice coil retained by a voice coil carrier, the voice coil being located in a constant magnetic field generated by the permanent magnet and the voice coil being coupled to the membrane wherein: the loudspeaker basket is coupled airtight to the casing; and the valve body penetrates the loudspeaker basket or the valve body is coupled airtight to the loudspeaker basket with the first opening of the valve body being aligned with an opening formed in the loudspeaker basket.
for changing the flow path through the silencer or for adjusting the dimensions of a chamber or a pipe (F01N1/165 takes precedence) · CPC title
by using an active noise source, e.g. speakers · CPC title
Acoustic transducers and sound field adaptation in vehicles · CPC title
Physics · mapped topic
Loudspeakers · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.