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Non-stationary Holography on Arbitrary Source Shapes

机译:任意源形状的非平稳全息

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Laser scanning and accelerometer measurements are often used for analysing vibrations of for instance motors under operation. However, the methods have certain disadvantages: Laser techniques typically scan one point at a time, which limits the methods to be applied only for stationary conditions. Accelerometers can be used for non-stationary conditions, but their physical mounting will to some extend influence the vibration of the source surface and due to cabling they are not practical for rotating objects. Near-field Acoustical Holography (NAH) is a non-contact experimental technique for mapping sound and vibration, and since the sound field is measured at multiple points around the source simultaneously, it can also be applied for non-stationary conditions. In particular, the Equivalent Source Method (ESM) is an attractive holography method, because it does not require neither the source nor the array geometry to be given in separable coordinates (planar, spherical, cylindrical etc.). This paper describes a non-stationary ESM approach for reconstruction of quantities like surface velocity and displacement. A set of measurements has been made with a 60 channel microphone array on a small electrical motor. Vibrations were also measured with a laser vibrometer in order to validate the accuracy of the array calculations.
机译:激光扫描和加速度计测量通常用于分析运行中的电动机的振动。但是,这些方法具有某些缺点:激光技术通常一次扫描一个点,这限制了仅在固定条件下使用的方法。加速度计可用于非固定条件,但其物理安装将在一定程度上影响源表面的振动,并且由于电缆连接,它们不适用于旋转物体。近场声全息术(NAH)是一种用于绘制声音和振动的非接触式实验技术,由于声场是在声源周围的多个点同时测量的,因此它也可以用于非平稳条件。特别是,等效源方法(ESM)是一种有吸引力的全息方法,因为它既不需要在可分离坐标(平面,球面,圆柱面等)中也不需要给出源或阵列几何形状。本文描述了一种非平稳的ESM方法,用于重建诸如表面速度和位移之类的量。在小型电动机上使用60通道麦克风阵列进行了一组测量。为了验证阵列计算的准确性,还使用激光振动计测量了振动。

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