论文标题

使用数值计算的绿色功能在受干扰的传播条件下进行测量的波束形成

Beamforming for measurements under disturbed propagation conditions using numerically calculated Green's functions

论文作者

Lehmann, Marius, Ernst, Daniel, Schneider, Marc, Spehr, Carsten, Lummer, Markus

论文摘要

声音源定位的波束形成方法通常基于自由场绿色的功能,以建模源和麦克风之间的声音传播。已知这种假设对于许多工业应用是不正确的,并且波束形成的结果可能会遇到这种不一致的,同时的源能力估计准确性以及源定位的准确性。本文的目的是调查使用数值计算的绿色功能是否可以改善射击测量结果的结果。 当前的数值和实验研究案例包括放置在短矩形管道中的来源。该测量在半隔室室内的管道外进行。这种安装的典型例子是带有热交换器的风扇。 使用边界元素方法计算该测试案例的绿色功能。这些量身定制的绿色功能用于计算相应的波束成型转向向量。转向矢量中绿色功能的加权对波束形成结果具有决定性的影响。基于两个标量给出了共同转向矢量公式的概括。结果表明,使用适当的转向向量矢量公式,可以使用任意可区分的绿色功能来找到正确的源位置或源功能水平。 使用扬声器作为热交管道中不同位置的参考源进行光束成型的测量。在频域中评估了测量值,并且通过不同的验证标准,可以证明,与自由野外光束成形相比,具有数值计算的绿色功能的结果得到了改善。

Beamforming methods for sound source localization are usually based on free-field Green's functions to model the sound propagation between source and microphone. This assumption is known to be incorrect for many industrial applications and the beamforming results can suffer from this inconsistency regarding both, accuracy of source power estimation, and accuracy of source localisation. The aim of this paper is to investigate whether the use of numerically calculated Green's functions can improve the results of beamforming measurements. The current test cases of numerical and experimental investigations consists of sources placed in a short rectangular duct. The measurement is performed outside the duct in a semi-anechoic chamber. A typical example for this kind of installation is a fan with a heat exchanger. The Green's functions for this test case are calculated numerically using the boundary element method. These tailored Green's functions are used to calculate the corresponding beamforming steering vectors. The weighting of the Green's functions in the steering vectors has a decisive influence on the beamforming results. A generalization of the common steering vector formulations is given based on two scalars. It is shown that arbitrary differentiable Green's functions can be used to find the correct source position or source power level by using the appropriate steering vector formulations. Beamforming measurements are performed using a loudspeaker as a reference source at different positions in the heat exchanger duct. The measurements are evaluated in the frequency domain and by means of different validation criteria it can be shown that the results with the numerical calculated Green's function are improved compared to free field beamforming especially at low frequencies.

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