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Structural sources identification through an inverse mid-high frequency energy method

机译:通过逆中高频能量法识别结构物

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This paper is primarily focused on the identification of structural forces, with the objective of localizing forces injected into structures in the mid-high frequency range. An energy method, called the simplified energy method (MES), has already been introduced for the purpose of predicting an energy density distribution for structural acoustic problems in the mid-high frequency range. The present paper proposes using this same energy method to solve inverse structural problems. More specifically, the injected forces are to be estimated and localized through knowledge of a set of energy densities within the structure. The 2D formulation of this inverse approach, known as inverse MES (or IMES), is first expressed. Both the boundary and internal sources can then be detected by applying the proposed formulation. Numerical test results are processed using a 2D Kirchhoff plate, and a number of conclusions are also drawn regarding IMES capabilities. Moreover, this paper offers a numerical comparison with another energy-based method.
机译:本文主要侧重于结构力的识别,目的是确定注入中高频范围内结构的力。为了预测中高频范围内结构声学问题的能量密度分布,已经引入了一种称为简化能量方法(MES)的能量方法。本文提出使用相同的能量方法来解决逆结构问题。更具体地,将通过了解结构内的一组能量密度来估计和定位注入力。首先表示这种逆方法的2D公式,称为逆MES(或IMES)。然后可以通过应用建议的公式来检测边界源和内部源。使用2D Kirchhoff平板处理数值测试结果,并且还得出许多有关IMES功能的结论。此外,本文提供了与另一种基于能量的方法的数值比较。

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