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首页> 外文期刊>Journal of Sound and Vibration >Adaptive parametric model order reduction technique for optimization of vibro-acoustic models: Application to hearing aid design
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Adaptive parametric model order reduction technique for optimization of vibro-acoustic models: Application to hearing aid design

机译:自适应参数模型顺序减少技术,用于优化振动声学模型:助听器设计的应用

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Finite Element (FE) models of complex structural-acoustic coupled systems can require a large number of degrees of freedom in order to capture their physical behaviour. This is the case in the hearing aid field, where acoustic-mechanical feedback paths are a key factor in the overall system performance and modelling them accurately requires a precise description of the strong interaction between the light-weight parts and the internal and surrounding air over a wide frequency range. Parametric optimization of the FE model can be used to reduce the vibroacoustic feedback in a device during the design phase; however, it requires solving the model iteratively for multiple frequencies at different parameter values, which becomes highly time consuming when the system is large. Parametric Model Order Reduction (pMOR) techniques aim at reducing the computational cost associated with each analysis by projecting the full system into a reduced space. A drawback of most of the existing techniques is that the vector basis of the reduced space is built at an offline phase where the full system must be solved for a large sample of parameter values, which can also become highly time consuming. In this work, we present an adaptive pMOR technique where the construction of the projection basis is embedded in the optimization process and requires fewer full system analyses, while the accuracy of the reduced system is monitored by a cheap error indicator. The performance of the proposed method is evaluated for a 4-parameter optimization of a frequency response for a hearing aid model, evaluated at 300 frequencies, where the objective function evaluations become more than one order of magnitude faster than for the full system. (C) 2018 Elsevier Ltd. All rights reserved.
机译:复杂结构声耦合系统的有限元(FE)型号可能需要大量的自由度以捕获其物理行为。这是助听器领域的情况,其中声学反馈路径是整体系统性能的关键因素,并准确地建模它们需要精确描述轻质零件和内部和周围空气之间的强互动宽频率范围。 Fe模型的参数优化可用于在设计阶段减少设备中的纵传反馈;然而,它需要迭代地求解模型,以便在不同参数值下进行多个频率,这在系统大时变得高度耗时。参数模型顺序减少(PMOR)技术旨在通过将整个系统投射到降低空间来降低与每个分析相关联的计算成本。大多数现有技术的缺点是降低空间的矢量基础是在离线阶段构建的,其中必须为大型参数值样本来解决整个系统,这也可能变得高度耗时。在这项工作中,我们提出了一种自适应PMOR技术,其中投影基础的构造嵌入在优化过程中,并且需要更少的全系统分析,而廉价的错误指示器监测减速系统的准确性。评估所提出的方法的性能对于助听器模型的频率响应的4参数优化,在300频率下评估,其中目标函数评估比完整系统更快地变得多于一个数量级。 (c)2018年elestvier有限公司保留所有权利。

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