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Plane Wave Identification With Circular Arrays By Means Of A Finite Rate Of Innovation Approach

机译:通过有限的创新方法与圆形阵列平面波识别

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Many problems in the field of acoustic measurements depend on the direction of incoming wave fronts w.r.t. a measurement device or aperture. This knowledge can be useful for signal processing purposes such as noise reduction, source separation, de-aliasing and super-resolution strategies among others. This paper presents a signal processing technique for the identification of the directions of travel for the principal plane wave components in a sound field measured with a circular microphone array. The technique is derived from a finite rate of innovation data model and the performance is evaluated by means of a simulation study for different numbers of plane waves in the sound field.
机译:声学测量领域中的许多问题取决于传入波前沿的方向w.r.t.测量装置或光圈。这种知识对于信号处理目的非常有用,例如降噪,源分离,脱叠和超分辨率策略等。本文介绍了一种信号处理技术,用于识别用圆形麦克风阵列测量的声场中的主平面波分量的行进方向。该技术源自创新数据模型的有限率,并且通过对声场中的不同数量的平面波进行仿真研究来评估性能。

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