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ROBUST VIRTUAL SENSORS FOR VIBRO-ACOUSTIC APPLICATIONS USING STRUCTURAL SENSING

机译:基于结构感测的用于声学应用的坚固型虚拟传感器

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The work was aimed to develop a robust virtual sensing method for vibro-acoustic applications without the use of acoustic sensors. Sound pressures inside a vibro-acoustic enclosure were estimated from structural sensors by utilizing the effect of fluid-structural coupling. A structural sensor placement method was developed using the averaged sensor output energy of a vibro-acoustic system excited by a spatially-varying point source. It was found that the observability level of cavity-controlled mode is influenced by the modal coupling and resonance frequency of uncoupled structural modes. Robust filtering was used to develop virtual sensors that were robust against certain dynamic uncertainties in the vibro-acoustic system. Virtual sensing performance was numerically investigated on a coupled panel-cavity system, which demonstrated superior sensing performance of robust virtual sensors compared to that of standard virtual sensors. Therefore the proposed virtual sensing method allows the use of compact structural sensors, instead of potentially bulky acoustic sensors, for sensing and active control applications of vibro-acoustic systems.
机译:这项工作旨在为振动声学应用开发一种健壮的虚拟传感方法,而无需使用声学传感器。利用流体-结构耦合的作用,从结构传感器估算出振动声学外壳内部的声压。开发了一种结构传感器放置方法,该方法使用了由空间变化点源激发的振动声学系统的平均传感器输出能量。发现腔控制模式的可观察性水平受非耦合结构模式的模态耦合和共振频率的影响。鲁棒滤波用于开发虚拟传感器,该传感器对振动声系统中的某些动态不确定性具有鲁棒性。在耦合面板腔系统上对虚拟感测性能进行了数值研究,与标准虚拟传感器相比,该系统证明了坚固的虚拟传感器具有出色的感测性能。因此,所提出的虚拟感测方法允许使用紧凑的结构传感器而不是潜在的笨重的声传感器,以用于振动声系统的感测和主动控制应用。

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