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首页> 外文期刊>Measurement Science & Technology >Compressive sensing based spinning mode detections by in-duct microphone arrays
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Compressive sensing based spinning mode detections by in-duct microphone arrays

机译:感应麦克风阵列基于压缩感测的旋转模式检测

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摘要

This paper presents a compressive sensing based experimental method for detecting spinning modes of sound waves propagating inside a cylindrical duct system. This method requires fewer dynamic pressure sensors than the number required by the Shannon-Nyquist sampling theorem so long as the incident waves are sparse in spinning modes. In this work, the proposed new method is firstly validated by preparing some of the numerical simulations with representative set-ups. Then, a duct acoustic testing rig with a spinning mode synthesiser and an in-duct microphone array is built to experimentally demonstrate the new approach. Both the numerical simulations and the experiment results are satisfactory, even when the practical issue of the background noise pollution is taken into account. The approach is beneficial for sensory array tests of silent aeroengines in particular and some other engineering systems with duct acoustics in general.
机译:本文提出了一种基于压缩感测的实验方法,用于检测在圆筒形管道系统内传播的声波的旋转模式。该方法需要的动态压力传感器要少于Shannon-Nyquist采样定理所需的数量,只要在旋转模式下入射波稀疏即可。在这项工作中,首先通过准备一些具有代表性设置的数值模拟来验证所提出的新方法。然后,构建了带有旋转模式合成器和感应麦克风阵列的风管声学测试台,以通过实验证明这种新方法。即使考虑到背景噪声污染的实际问题,数值模拟和实验结果也令人满意。该方法特别适用于无声航空发动机的传感阵列测试,以及通常具有管道声学特性的其他一些工程系统。

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