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Inverse methods in aeroacoustic three-dimensional volumetric noise source localization

机译:空气声三维体积噪声源定位的逆方法

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Acoustic source mapping with microphone arrays usually involves the implicit assumption that sources are situated on the surface where the calculation points are located. However, in some application, such as aeroacoustic source localization, this assumption may produce misleading results. This paper describes the use of inverse methods in the context of aeroacoustic volumetric source imaging. A comparative investigation in exploiting a single planar array or multiple planar arrays, observing noise sources from different directions, is performed. Moreover, since aeroacoustic data are often spoiled by noise and different sources of quite different strengths are present, a novel use of CLEAN-SC as pre-processing step for inverse methods is discussed. The simulated and experimental results presented in the paper refer to a Counter Rotating Open Rotor installed on a 1/7th scale aircraft model placed in a large Low Speed Wind Tunnel.
机译:具有麦克风阵列的声学源映射通常涉及隐含假设,该隐含假设位于计算点所在的表面上。然而,在某些应用中,例如空气声源定位,这种假设可能产生误导性结果。本文介绍了在空气声学体积成像的背景下使用逆方法。执行在利用单个平面阵列或多个平面阵列的比较研究,观察来自不同方向的噪声源。此外,由于存在气动声学数据,因此存在由于噪声和相当不同的强度的不同来源,因此讨论了一种新颖的清洁SC作为用于逆方法的预处理步骤。本文中提出的模拟和实验结果是指安装在放置在大型低速风洞的1/7尺度飞机模型上的计数器旋转开口转子。

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