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Application of a Virtual Rotating Array for Near-field Localization of Rotating Sound Sources

机译:虚拟旋转阵列在旋转声源近场定位的应用

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In recent years, the virtual rotating array method has been developed and applied to beamforming for localizing the sound sources due to rotating objects, such as axial fan, rotating wind turbine blades etc.. However, there are still very few studies dealing with the near-field rotating sound source visualization. In the current study, the virtual rotating array method is proposed to work with near-field holography for localization and visualization of near-field rotating sound source. Firstly, the virtual rotating array signals are synthesized by interpolating the near-field static array measurement. Different interpolation strategies are utilized, and their errors are quantified. Then, the virtual rotating array signals are processed using different holography methods, to reconstruct the near-field sound pressure due to rotating sources. Numerical validations have been performed using the simulated sound signals. The simulation results have demonstrated that the near-field sound sources can be reconstructed successfully w ith high accuracy using the proposed approach.
机译:近年来,已经开发了虚拟旋转阵列方法,并应用于波束成形,以便由于旋转物体,例如轴向风扇,旋转风力涡轮机叶片等而定位声源。但是,仍有很少的研究处理近-Field旋转声源可视化。在目前的研究中,提出了虚拟旋转阵列方法,用于与近场全息术合作,以便定位和近场旋转声源的可视化。首先,通过内插近场静态阵列测量来合成虚拟旋转阵列信号。利用不同的插值策略,它们的错误量化。然后,使用不同的全息方法处理虚拟旋转阵列信号,以重建引起的旋转源引起的近场声压。使用模拟声音信号执行数值验证。仿真结果表明,近场声源可以使用所提出的方法成功地重建高精度。

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