Vehicle engine sound enhancement

US9299337B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9299337-B2
Application numberUS-201113004630-A
CountryUS
Kind codeB2
Filing dateJan 11, 2011
Priority dateJan 11, 2011
Publication dateMar 29, 2016
Grant dateMar 29, 2016

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Abstract

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An engine harmonic enhancement system. The EHE system uses multiple parameters, such as engine load, gear, number of cylinders operating, and transmission ratio, to determine EHE gains to determine EHE gain. The EHE system determines a separate EHE gain for each harmonic.

First claim

Opening claim text (preview).

What is claimed is: 1. A method, comprising: providing a fundamental frequency corresponding to the RPM of an engine of a vehicle; determining a plurality of harmonics of the fundamental frequency; determining a target shape of the plurality of harmonics, the target shape comprising, for each of the harmonics of the plurality of the harmonics, a gain value as a function of the RPM of the engine; determining an engine harmonic enhancement gain curve comprising gain values as a function of engine load; and combining the plurality of harmonics, the target shape of the plurality of harmonics, and the engine harmonic enhancement gain curve to produce a set of harmonic enhancement signals; wherein determining the engine harmonic enhancement gain curve comprises, for at least one of the plurality of harmonics, determining a set of gain values as a function of engine load that is different from a set of gain values as a function of engine load corresponding to the other harmonics, wherein determining of an engine harmonic enhancement gain curve for at least one of the plurality of harmonics comprises: determining the value of a parameter other than the engine load related to an operating condition of a vehicle; and responsive to the value of the parameter and the engine load, determining the engine harmonic enhancement gain curve, and wherein the parameter is a transmission ratio of a continuously variable transmission. 2. The method of claim 1 , wherein the determining an engine harmonic enhancement gain curve comprises separately determining an engine harmonic gain curve for each harmonic. 3. The method of claim 1 , wherein the determining the engine harmonic enhancement gain curve further comprises determining separately an engine harmonic enhancement gain curve corresponding to each of the plurality of harmonics of the fundamental engine frequency, wherein the engine harmonic enhancement gain curve corresponding to at least one of the harmonics is different that the engine harmonic enhancement gain curves corresponding to the other harmonics; and further comprising applying to the fundamental engine frequency and to each of the plurality of harmonics of the fundamental engine frequency a corresponding engine harmonic enhancement gain curve. 4. The method of claim 3 , further comprising: determining a rate of change of the RPM of the engine of the vehicle; and ceasing to produce the set of harmonic enhancement signals, when the rate of change of the RPM is steady or decreasing. 5. The method of claim 1 wherein producing the set of harmonic enhancement signals comprises, for each harmonic of the plurality of harmonics, combining that harmonic, the gain value of the target shape for that harmonic, and the set of gain values of the gain curve for that harmonic separately from the other harmonics. 6. An engine harmonic enhancement system, comprising: circuitry for providing a fundamental frequency corresponding to the RPM of the engine; circuitry for determining a plurality of harmonics of the fundamental frequency; circuitry for determining a target shape of the plurality of harmonics, the target shape comprising, for each of the harmonics of the plurality of the harmonics, a gain value as a function of the RPM of the engine; circuitry for determining an engine harmonic enhancement gain curve comprising gain values as a function of engine load; and circuitry for combining the plurality of harmonics, the target shape of the plurality of harmonics, and the engine harmonic enhancement gain curve to produce a set of harmonic enhancement signals; wherein the circuitry for determining the engine harmonic enhancement gain curve determines, for at least one of the plurality of harmonics a set of gain values as a function of engine load that is different from a set of gain values as a function of engine load corresponding to the other harmonics, wherein the circuitry for determining of an engine harmonic enhancement gain curve for at least one of the plurality of harmonics comprises: circuitry for determining the value of a parameter other than the engine load related to an operating condition of a vehicle; and circuitry responsive to the value of the parameter and the engine load, for determining an engine harmonic enhancement gain curve, and wherein the parameter is a transmission ratio of a continuously variable transmission. 7. The apparatus of claim 6 , wherein the circuitry for determining an engine harmonic enhancement gain curve comprises circuitry for separately determining an engine harmonic gain curve for each harmonic. 8. The apparatus of claim 6 , wherein the circuitry for determining the engine harmonic enhancement gain curve further comprises circuitry for determining separately an engine harmonic enhancement gain curve corresponding to each of the plurality of harmonics of the fundamental engine frequency, wherein the engine harmonic enhancement gain curve corresponding to at least one of the harmonics is different that the engine harmonic enhancement gain curves corresponding to the other harmonics; and further comprising circuitry for applying to the fundamental engine frequency and to each of the plurality of harmonics of the fundamental engine frequency a corresponding engine harmonic enhancement gain curve. 9. The apparatus of claim 8 , further comprising: circuitry for determining a rate of change of the RPM of the engine of the vehicle; and circuitry for ceasing to produce the set of harmonic enhancement signals, when the rate of change of the RPM is steady or decreasing. 10. The apparatus of claim 6 wherein the circuitry for producing the set of harmonic enhancement signals combines the gain value of the target shape for each harmonic of the plurality of harmonics with the set of gain values of the gain curve for that harmonic separately from the other harmonics. 11. A method, comprising: providing a fundamental frequency corresponding to the RPM of an engine of a vehicle; determining a plurality of harmonics of the fundamental frequency; determining a target shape of the plurality of harmonics, the target shape comprising, for each of the harmonics of the plurality of the harmonics, a gain value as a function of the RPM of the engine; determining an engine harmonic enhancement gain curve comprising gain values as a function of engine load; and combining the plurality of harmonics, the target shape of the plurality of harmonics, and the engine harmonic enhancement gain curve to produce a set of harmonic enhancement signals; wherein determining the engine harmonic enhancement gain curve comprises: determining a transmission ratio of a continuously variable transmission; and responsive to the transmission ratio of the continuously variable transmission and the engine load, determining the engine harmonic enhancement gain curve.

Assignees

Inventors

Classifications

  • G10K15/02Primary

    Synthesis of acoustic waves (synthesis of speech G10L13/00) · CPC title

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  • Control strategies, e.g. energy minimization or intensity measurements · CPC title

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What does patent US9299337B2 cover?
An engine harmonic enhancement system. The EHE system uses multiple parameters, such as engine load, gear, number of cylinders operating, and transmission ratio, to determine EHE gains to determine EHE gain. The EHE system determines a separate EHE gain for each harmonic.
Who is the assignee on this patent?
Hera Cristian M, Klug Dennis D, Bose Corp
What technology area does this patent fall under?
Primary CPC classification G10K15/02. Mapped technology areas include Physics.
When was this patent published?
Publication date Tue Mar 29 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).