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Computation of the frequency responses for distributed systems with one spatial variable

机译:具有一个空间变量的分布式系统的频率响应计算

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For a class of distributed systems with one spatial variable, we develop a method for computing the maximum singular value of the frequency response operator. This computation is typically done by resorting to finite-dimensional approximations of the underlying operators. In this paper, we introduce an alternative approach that avoids the need for numerical approximation of the operators in the evolution model. This involves two steps: (i) recasting the frequency response operator as a two point boundary value problem; and (ii) using state-of-the-art automatic spectral collocation techniques for solving the resulting boundary value problems with accuracy comparable to machine precision. We provide an example from viscoelastic fluid dynamics to illustrate the utility of the proposed method.
机译:对于具有一个空间变量的一类分布式系统,我们开发了一种用于计算频率响应算子的最大奇异值的方法。通常通过诉诸底层算子的有限维近似来完成此计算。在本文中,我们介绍了一种替代方法,该方法避免了在演化模型中需要对算符进行数值逼近。这涉及两个步骤:(i)将频率响应算符重铸为两点边界值问题; (ii)使用最先进的自动光谱配置技术来解决由此产生的边界值问题,其精度可与机器精度媲美。我们提供了一个从粘弹性流体动力学的例子来说明所提出方法的实用性。

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