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Source Identification in Structural Acoustics with an Inverse Frequency Response Function Technique

机译:用逆频响应函数技术识别结构声学中的震源

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摘要

Inverse source identification based on acoustic measurements is essential for the investigation and understanding of sound fields generated by structural vibrations of various devices and machinery. Acoustic pressure measurements performed on a grid in the nearfield of a surface can be used to determine the vibration pattern of the surface at the frequency of interest. A general applicable method is the inverse frequency response function method (IFRF). The method is preferred, because it imposes no limitations on the shape of the measurement grid and the geometry of the source. Unfortunately, the inverse problem consists of solving an ill-conditioned system of equations, which can be only be performed by application of regularization (stabilization) techniques. Without these techniques the solution will be dominated by effects resulting from modeling errors and measurement noise.udThe presentation investigates the physical nature of the ill-conditioned problem and explains how to deal with it. The quality of the approximated solution is mainly determined by the choice of a regularization parameter. This paper investigates the use of an L-curve plot for choosing the "optimal" parameter.udAn illustration of the various steps in the acoustic source identification procedure will be given by means of a simulated experiment on the sound radiation of a rigid box covered by a flexible plate.
机译:基于声学测量的逆声源识别对于调查和理解由各种设备和机械的结构振动产生的声场至关重要。在表面近场中的网格上执行的声压测量可用于确定感兴趣频率下的表面振动模式。通用的方法是逆频率响应函数法(IFRF)。该方法是优选的,因为它对测量网格的形状和源的几何形状没有任何限制。不幸的是,反问题包括求解病态方程组,这只能通过应用正则化(稳定化)技术来执行。如果没有这些技术,则解决方案将由建模误差和测量噪声导致的影响所支配。 ud本演讲调查了病态问题的物理性质,并解释了如何解决。近似解的质量主要取决于选择正则化参数。本文研究了使用L曲线图来选择“最佳”参数。 ud通过模拟实验对覆盖的刚性箱体的声辐射进行了说明,说明了声源识别过程的各个步骤。通过柔性板。

著录项

  • 作者

    Visser R.;

  • 作者单位
  • 年度 2002
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
  • 中图分类

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