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Acoustic imaging of a duct spinning mode by the use of an in-duct circular microphone array

机译:通过使用感应式圆形麦克风阵列对风管旋转模式进行声学成像

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摘要

An imaging method of acoustic spinning modes propagating within a circular duct simply with surface pressure information is introduced in this paper. The proposed method is developed in a theoretical way and is demonstrated by a numerical simulation case. Nowadays, the measurements within a duct have to be conducted using in-duct microphone array, which is unable to provide information of complete acoustic solutions across the test section. The proposed method can estimate immeasurable information by forming a so-called observer. The fundamental idea behind the testing method was originally developed in control theory for ordinary differential equations. Spinning mode propagation, however, is formulated in partial differential equations. A finite difference technique is used to reduce the associated partial differential equations to a classical form in control. The observer method can thereafter be applied straightforwardly. The algorithm is recursive and, thus, could be operated in real-time. A numerical simulation for a straight circular duct is conducted. The acoustic solutions on the test section can be reconstructed with good agreement to analytical solutions. The results suggest the potential and applications of the proposed method.
机译:介绍了一种利用表面压力信息简单地在圆形管道内传播的声学自旋模式的成像方法。所提出的方法是从理论上开发的,并通过数值模拟实例进行了证明。如今,必须使用导管式麦克风阵列在导管内进行测量,该导管无法提供整个测试部分的完整声学解决方案信息。所提出的方法可以通过形成所谓的观察者来估计不可测量的信息。测试方法背后的基本思想最初是针对常微分方程的控制理论提出的。但是,自旋模式传播由偏微分方程式表示。有限差分技术用于将相关的偏微分方程简化为控制形式。此后可以直接应用观察者方法。该算法是递归的,因此可以实时运行。进行了圆形直管的数值模拟。可以重建测试部分的声学解决方案,使其与分析解决方案完全一致。结果表明了该方法的潜力和应用。

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