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Calibration of the two microphone transfer function method with hard wall impedance measurements at different reference sections

机译:使用不同参考部分的硬壁阻抗测量值校准两个麦克风传递函数方法

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摘要

In many acoustic simulations, particularly when using lumped parameter models or electrical analog circuits, the acoustic impedance of a component needs to be determined accurately. A widely used acoustic impedance measurement method is the “two microphone transfer function method”, which is standardized in ISO-10534-2. When the acoustic impedance is needed over a wide frequency band with a high impedance magnitude range, this method faces some limitations. In this paper, a calibration method is proposed which uses hard wall impedance measurements at different positions of the reference section. The measured hard wall impedance is used to calibrate the microphone positions, to compensate the microphone mismatch and to estimate the wave guide damping. Also, the measured hard wall impedance can be used as performance criterion. It can be used to select frequency bands from different load impedance measurements where the accuracy is maximum and to assemble them in a load impedance measurement. As a result, impedances with a high ratio with respect to the characteristic duct impedance can be accurately measured. The capability of the presented calibration method is illustrated by the impedance measurement of an open duct end and a closed tube.
机译:在许多声学模拟中,尤其是在使用集总参数模型或电模拟电路时,需要准确确定组件的声学阻抗。广泛使用的声阻抗测量方法是“两个麦克风传递函数方法”,该方法在ISO-10534-2中进行了标准化。当在具有高阻抗幅度范围的宽频带上需要声阻抗时,该方法面临一些限制。在本文中,提出了一种校准方法,该方法在参考部分的不同位置使用硬壁阻抗测量。测得的硬壁阻抗用于校准麦克风位置,补偿麦克风失配并估计波导阻尼。同样,测得的硬壁阻抗可用作性能标准。它可用于从精度最高的不同负载阻抗测量中选择频段,并将其组合到负载阻抗测量中。结果,可以精确地测量相对于特征导管阻抗的比率高的阻抗。所提出的校准方法的能力通过开口导管末端和封闭导管的阻抗测量来说明。

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