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Modellization of mechanical vibrations in organ pipes by Independent Component Analysis

机译:独立分量分析机械管中机械振动的改变

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Several experiments have been carried out to investigate the mechanical vibrations generated by an organ pipe. Measurements were made by using Laser Doppler Vibrometry. It is a not-invasive optical measurement technique which allows to detect pipe-wall vibrations. The mechanical vibration field is compared with the acoustic field. Namely, we study the behaviour of these fields when they are excited by different levels of pressure. Strong analogies have been evidenced by using techniques in time e frequency domain supporting the assumption that the pipe is not a passive resonator. The challenge is to understand the complex mechanism of coupling between modes of air and eigen-modes of pipe that produces the sound. Here, we present, in first approximation, a low dimensional dynamical system which describes the main characteristics of pipe-wall vibrations. What is interesting is that the same low dimensional dynamical system is able to reproduce also the recorded acoustic field, implying that wall vibrations and acoustic pressure field are strictly related one to each other.
机译:已经进行了几个实验,以研究器官管产生的机械振动。通过使用激光多普勒振动器进行测量。它是一种非侵入式光学测量技术,可以检测管壁振动。与声场进行比较机械振动场。即,我们研究这些领域的行为,当它们被不同的压力兴奋时。通过使用时间频域的技术在支持管道不是被动谐振器的假设的情况下,已经通过了强大的类比。挑战是了解产生产生声音的空气模式和尖端模式的耦合的复杂机制。这里,我们在第一近似时,在第一近似,描述了管壁振动的主要特征的低尺寸动力系统。有趣的是,相同的低尺寸动力系统能够再现记录的声场,这意味着壁振动和声压场彼此严格相关。

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