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Shape analysis with the 'Boundary Integral-Resonant Mode Expansion' method

机译:使用“边界积分共振模式扩展”方法进行形状分析

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This paper proposes the applications of the Boundary Integral-Resonant Mode Expansion (BI-RME) method to the shape analysis problem, an approach originally implemented for the determination of modes of a cavity resonator. We explore its advantages for shape analysis and recognition of a BI-RME based modal matching algorithm, where each shape is represented with a set of eigenfunctions, and solutions of the Helmholtz equation with Dirichet boundary condition. These solutions correspond to the vibration modes of an elastic sheet of arbitrary shape and fixed boundary and show some advantages over previous approaches. It is demonstrated that the BI-RME algorithm is particularly suitable for characterizing shapes with multiply connected boundaries and requires small cpu times.
机译:本文提出了边界积分谐振模态扩展(BI-RME)方法在形状分析问题中的应用,该方法最初是用于确定谐振腔模态的一种方法。我们探索其在基于BI-RME的模态匹配算法的形状分析和识别中的优势,其中每个形状都由一组特征函数来表示,以及具有Dirichet边界条件的Helmholtz方程的解。这些解决方案对应于任意形状和固定边界的弹性片的振动模式,并且显示出优于现有方法的一些优点。结果表明,BI-RME算法特别适用于表征具有多个连接边界的形状,并且需要的cpu​​时间短。

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