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On the multiple microphone method for measuring in-duct acoustic properties in the presence of mean flow

机译:关于在平均流量存在下测量导管内声学特性的多麦克风方法

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摘要

Nowadays, the two-microphone method is accepted as the standard as specified in ASTM E1050-90 for measuring in-duct acoustic properties. However, research results on using the least square method with multiple measurement points and broadband excitation have been reported for enhancing the frequency response of the two-microphone method. In this paper, the effects of varying the relative measurement positions on errors in the estimation of the acoustic quantities is studied for the multiple microphone method. Both the theoretical and experimental results show that, among possible sensor positioning configurations, the equidistant positioning of sensors yields the smallest error within the effective measurement frequency range. In addition, it is noted that the measurement accuracy can be increased and the effective frequency range can be widened by increasing the number of equidistant sensors. Measurement examples are shown and the results support the findings.
机译:如今,两麦克风法已成为ASTM E1050-90中测量导管内声学特性的标准方法。然而,已经报道了将最小二乘法与多个测量点一起使用以及宽带激励以增强两麦克风法的频率响应的研究结果。在本文中,对于多麦克风方法,研究了改变相对测量位置对估计声学量时的误差的影响。理论和实验结果均表明,在可能的传感器定位配置中,传感器的等距定位在有效测量频率范围内产生的误差最小。另外,应注意的是,通过增加等距传感器的数量,可以提高测量精度并且可以扩大有效频率范围。显示了测量示例,结果支持了发现。

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