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首页> 外文期刊>The Journal of the Acoustical Society of America >Implicit methods of solution to integral formulations in boundary element method based nearfield acoustic holography
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Implicit methods of solution to integral formulations in boundary element method based nearfield acoustic holography

机译:基于近场声全息的边界元法中积分公式的隐式解法

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摘要

Two integral equation methods are considered which can be inverted to provide the surface velocity and/or pressure given measurement of the pressure on an imaginary surface in the nearfield of a vibrating or scattering body. This problem is central to nearfield acoustical holography (NAH). The integral equations are discretized using boundary element methods (BEMs). The integral equation methods considered are (1) an indirect formulation method based on the single layer integral equation and (2) a direct formulation method based on a system of equations derived from the Helmholtz-Kirchhoff integral equation. The formation of integral equations from the mentioned methods will not involve the explicit inversion of matrices, but instead will require this inversion to be done implicitly: Since these methods back-track the sound field from the measurement surface to the surface of the source/vibrator they are ill-posed in nature and Tikhonov regularization are used to stabilize the reconstruction. Problems are noted with the use of higher order shape functions in the BEM discretization which are detrimental to the inversion, and it is shown that the breakdown of the method at the interior resonance frequencies can be mitigated successfully. These two approaches are compared with the conventional direct method using measured experimental data from a point-driven rectangular plate. (C) 2004 Acoustical Society of America.
机译:考虑了两种积分方程方法,可以对它们进行求逆,以在振动或散射体的近场中测量假想表面上的压力的情况下提供表面速度和/或压力。这个问题对于近场声学全息术(NAH)至关重要。使用边界元法(BEM)离散积分方程。考虑的积分方程方法是(1)基于单层积分方程的间接公式化方法和(2)基于从Helmholtz-Kirchhoff积分方程派生的方程组的直接公式方法。由上述方法形成的积分方程将不涉及矩阵的显式反演,而是需要隐式完成该反演:由于这些方法将声场从测量表面回溯到源/振动器的表面它们本质上是不适的,并且使用Tikhonov正则化来稳定重建。注意到在BEM离散化中使用高阶形状函数存在问题,这对反演是有害的,这表明在内部共振频率下该方法的分解可以成功地得到缓解。使用来自点驱动矩形板的实测实验数据,将这两种方法与常规直接方法进行比较。 (C)2004年美国声学学会。

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