IP Library Granted Patent US 7,240,544
Granted Patent B2
US 7,240,544 · App. 11/020,786 · Granted Jul 10, 2007

Aerodynamic noise source measurement system for a motor vehicle

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Quick Facts
Patent No.
US 7,240,544
App. No.
11/020,786
Granted
Jul 10, 2007
Kind
B2
Abstract

An aerodynamic noise measurement system for a vehicle uses sound reflectors to determine the sound wave propagation of aerodynamic noise of the vehicle. The vehicle is placed within a test section of a wind tunnel. The air flow of the wind tunnel generates the aerodynamic noise as it passes over the vehicle. An array of sound reflectors is placed outside of the air flow of the wind tunnel. Microphone arrays receive the aerodynamic noise directly from the source and from the sound reflectors. An analyzer system forms an acoustic image of the vehicle based on the aerodynamic noise. A viewing device displays an image of the vehicle with an overlay of aerodynamic noise data in real-time.

Claims (28)

1. An aerodynamic noise measurement system for a vehicle comprising:

a wind tunnel that generates a flow of air;

a test area within the flow of air;

a plurality of sound reflectors positioned along one side of the vehicle and arranged outside of the flow of air, wherein each of the sound reflectors is arranged to receive sound waves from a specific portion of the vehicle simultaneously in real-time and includes a microphone array that measures_aerodynamic noise generated by a vehicle in the test area and generates data signals indicative of the measured aerodynamic noise; and

an analyzer system that receives the data signals and generates an image of the vehicle and a noise map overlay with precise position of noise sources based on the data signals.

2. The aerodynamic noise measurement system of claim 1 wherein the analyzer system determines a time function of the aerodynamic noise according to the data signals.

3. The aerodynamic noise measurement system of claim 1 wherein the analyzer system performs time sampling on the data signals.

4. The aerodynamic noise measurement system of claim 3 wherein the analyzer system performs the time sampling based on at least one of a Helmholz integral equation, a cross spectra, and a time delay of the aerodynamic noise from the specific portion of the vehicle.

5. The aerodynamic noise measurement system of claim 1 wherein the analyzer system calculates a spectrum of a sound pressure level at the specific portions of the vehicle.

6. The aerodynamic noise measurement system of claim 5 wherein the analyzer system calculates the spectrum according to a Fourier transform equation.

7. The aerodynamic noise measurement system of claim 1 further comprising a viewing device that displays an image of the vehicle with an overlay of audio data that is indicative of the aerodynamic noise from the specific portions of the vehicle.

8. The aerodynamic noise measurement system of claim 7 wherein the overlay includes sound pressure levels of the aerodynamic noise from the specific portions of the vehicle.

9. The aerodynamic noise measurement system of claim 7 wherein the viewing device displays the image and the overlay in real-time.

10. An aerodynamic noise measurement method comprising:

generating a flow of air;

locating a vehicle within the flow of air;

measuring aerodynamic noise from the vehicle at a plurality of sound reflectors positioned along one side of the vehicle and arranged outside the flow of air;

measuring aerodynamic noise from a first portion of the vehicle at a first one of the plurality of sound reflectors and simultaneously in real-time measuring aerodynamic noise from a second portion of the vehicle at a second one of the plurality of sound reflectors;

generating data signals indicative of the measured aerodynamic noise;

generating an image of the vehicle and a noise map overlay with precise position of noise sources based on the data signals.

11. The aerodynamic noise measurement method of claim 10 further comprising determining a time function of the aerodynamic noise according to the data signals.

12. The aerodynamic noise measurement method of claim 10 further comprising performing time sampling on the data signals.

13. The aerodynamic noise measurement method of claim 12 wherein the step of performing time sampling includes performing time sampling based on at least one of a Helmholz integral equation, a cross spectra, and a time delay of the aerodynamic noise from the specific portion of the vehicle.

14. The aerodynamic noise measurement method of claim 10 further comprising calculating a spectrum of a sound pressure level at the first portion and the second portion.

15. The aerodynamic noise measurement method of claim 14 wherein the step of calculating includes calculating the spectrum according to a Fourier transform equation.

16. The aerodynamic noise measurement method of claim 10 further comprising displaying an image of the vehicle with an overlay of audio data indicative of the aerodynamic noise.

17. The aerodynamic noise measurement method of claim 16 wherein the step of measuring the aerodynamic noise and the step of displaying the overlay of audio data indicative of the aerodynamic noise occur simultaneously.

18. The aerodynamic noise measurement method of claim 17 wherein the step of displaying includes displaying sound pressure levels at the first and second portions.

Assignments (4)
RELEASE OF SECURITY INTEREST Recorded Jan 24, 2019
From: JPMORGAN CHASE BANK, N.A.
To: FCA US LLC (FORMERLY KNOWN AS CHRYSLER GROUP LLC)
Reel/Frame 048177/0356 →
RELEASE OF SECURITY INTEREST RELEASING SECOND-LIEN SECURITY INTEREST PREVIOUSLY RECORDED AT REEL 026426 AND FRAME 0644, REEL 026435 AND FRAME 0652, AND REEL 032384 AND FRAME 0591 Recorded Feb 11, 2016
From: CITIBANK, N.A.
To: FCA US LLC, FORMERLY KNOWN AS CHRYSLER GROUP LLC
Reel/Frame 037784/0001 →
CHANGE OF NAME Recorded Apr 30, 2015
From: CHRYSLER GROUP LLC
To: FCA US LLC
Reel/Frame 035553/0356 →
SECURITY AGREEMENT Recorded Mar 4, 2014
From: CHRYSLER GROUP LLC
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 032384/0640 →