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Technical Paper

The Design and Evaluation of Microphone Arrays for the Visualization of Noise Sources on Moving Vehicles

1999-05-17
1999-01-1742
The present work was directed towards the design of a sideline microphone array specifically adapted to the visualization of automotive noise sources in the 500 Hz to 2000 Hz range. The particular design philosophy followed here involved the minimization of the array redundancy: i.e., the minimization of the number of pairs of microphones that are separated by the same distance in the same directions. The performance of sixty-four element microphone arrays designed according to this principle will be illustrated through the use of simulated motor vehicle passbys. In addition, their performance will be compared with more conventional array designs: e.g., elliptical, and spiral arrays.
Technical Paper

An Efficient Procedure for Visualizing the Sound Field Radiated by Vehicles During Standardized Passby Tests

1999-05-17
1999-01-1741
Spherical beamforming was used to visualize sound radiation during a vehicle passby test. Forward and backward propagation procedures are compared in terms of computational expense. A spherical spreading correction factor is described, along with a maximum liklihood procedure for obtaining an optimal array weighting dependent on the relative distance between the microphones and the focus point. The de-Dopplerized microphone outputs are multiplied by the weighting factors and summed to yield the source strengths over a reconstruction plane “attached” to the vehicle. Results obtained using a 16 element sparse array during an actual passby are used to demonstrate the present approach.
Technical Paper

Acoustical Finite Element Model of Elastic Porous Materials

1995-04-01
951087
A finite element model (FEM) of elastic noise control materials like polyurethane foams is presented in this paper, and its implementation in two-dimensional form as a computer program is discussed. So that realistic noise control treatments could be studied, methods for coupling the foam FEM with conventional acoustical and structural finite elements are also described. The validity of the foam FEM is demonstrated by computing the sound absorption and transmission characteristics of simple coupled air/foam/panel systems and by comparing the results with existing experimental and analytical results for such arrangements. The FEM has been used to show that the constraint of a foam layer at its edge stiffens the foam acoustically. In addition, it has been found that the constraint of the ends of the facing panels in a foam-lined double panel system increases the sound transmission loss significantly at low frequencies.
Technical Paper

Powertrain Sound Power Measurement Using a Two-Degree-of-Freedom Positioning Mechanism

1989-05-01
891164
An automated positioning mechanism has been developed for sound power measurement of automotive powertrains. The positioning mechanism was designed and built to carry a two microphone sound intensity probe along a cylindrical surface surrounding the powertrain. The fixture is driven by two electrical motors controlled by a small personal computer. Sound intensity is measured as the two microphone probe is swept along the surface. The apparatus was designed to conform to the ANSI Draft Standard S12-21 “Engineering Methods for Determination of Sound Power Levels Using Acoustic Intensity”. Verification and partial qualification of the apparatus was conducted according to the standard for a measurement procedure which used 10 linear sweeps along the cylindrical surface and two circular sweeps on each endcap of the measurement surface. The verification measurements showed the method to be in good agreement with alternative sound power measurement methods.
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