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首页> 外文期刊>Journal of Sound and Vibration >Indirect calibration of a large microphone array for in-duct acoustic measurements
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Indirect calibration of a large microphone array for in-duct acoustic measurements

机译:间接校准大型麦克风阵列以进行感应声学测量

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This paper addresses the problem of in situ calibration of a pin hole-mounted microphone array for in-duct acoustic measurements. One approach is to individually measure the frequency response of each microphone, by submitting the probe to be calibrated and a reference microphone to the same pressure field. Although simple, this task may be very time consuming for large microphone arrays and eventually suffer from lack of access to microphones once they are installed on the test bench. An alternative global calibration procedure is thus proposed in this paper. The approach is based on the fact that the acoustic pressure can be expanded onto an analytically known spatial basis. A projection operator is defined allowing the projection of measurements onto the duct modal basis. The main assumption of the method is that the residual resulting from the difference between actual and projected measurements is mainly dominated by calibration errors. An iterative procedure to estimate the calibration factors of each microphone is proposed and validated through an experimental set-up. In addition, it is shown that the proposed scheme allows an optimization of physical parameters such as the sound speed and parameters associated to the test bench itself, such as the duct radius or the termination reflection coefficient. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文解决了用于感应声学测量的针孔安装麦克风阵列的现场校准问题。一种方法是通过将要校准的探头和参考麦克风提交到相同的压力场来分别测量每个麦克风的频率响应。尽管很简单,但是对于大型麦克风阵列,此任务可能会非常耗时,并且一旦将麦克风安装在测试台上,最终将无法访问麦克风。因此,本文提出了另一种全局校准程序。该方法基于以下事实:声压可以扩展到分析已知的空间基础上。定义了一个投影算子,允许将测量值投影到管道模态上。该方法的主要假设是,实际测量值与预计测量值之间的差异所导致的残差主要由校准误差决定。提出了估计每个麦克风的校准因子的迭代程序,并通过实验设置对其进行了验证。另外,表明所提出的方案允许诸如声速的物理参数和与测试台自身相关联的参数(诸如管道半径或终端反射系数)的优化。 (C)2016 Elsevier Ltd.保留所有权利。

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