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首页> 外文期刊>The Journal of the Acoustical Society of America >Adaptive beamforming for array signal processing in aeroacoustic measurements
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Adaptive beamforming for array signal processing in aeroacoustic measurements

机译:自适应波束成形,用于航空声学测量中的阵列信号处理

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摘要

Phased microphone arrays have become an important tool in the localization of noise sources for aeroacoustic applications. In most practical aerospace cases the conventional beamforming algorithm of the delay-and-sum type has been adopted. Conventional beamforming cannot take advantage of knowledge of the noise field, and thus has poorer resolution in the presence of noise and interference. Adaptive beamforming has been used for more than three decades to address these issues and has already achieved various degrees of success in areas of communication and sonar. In this work an adaptive beamforming algorithm designed specifically for aeroacoustic applications is discussed and applied to practical experimental data. It shows that the adaptive beamforming method could save significant amounts of post-processing time for a deconvolution method. For example, the adaptive beamforming method is able to reduce the DAMAS computation time by at least 60 for the practical case considered in this work. Therefore, adaptive beamforming can be considered as a promising signal processing method for aeroacoustic measurements.
机译:相控麦克风阵列已经成为航空声学应用中噪声源定位的重要工具。在大多数实际的航空航天情况下,已经采用了传统的延迟加总型波束形成算法。传统的波束成形不能利用噪声场的知识,因此在存在噪声和干扰的情况下分辨率较差。自适应波束成形已经用于解决这些问题超过三十年了,并且已经在通信和声纳领域取得了不同程度的成功。在这项工作中,讨论了专门为航空声学应用设计的自适应波束成形算法,并将其应用于实际实验数据。它表明自适应波束成形方法可以为反卷积方法节省大量的后处理时间。例如,对于本工作中考虑的实际情况,自适应波束成形方法能够将DAMAS计算时间至少减少60。因此,自适应波束形成可以被认为是一种用于航空声学测量的有前途的信号处理方法。

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