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首页> 外文期刊>The Journal of the Acoustical Society of America >Optimal two-layer directive microphone array with application in near-field acoustical holography
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Optimal two-layer directive microphone array with application in near-field acoustical holography

机译:最佳两层定向麦克风阵列及其在近场声全息中的应用

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摘要

Conventional near-field acoustical holography (NAH) is generally based on the free-field assumption, which can cause errors when interfering sources are present in practical environments. To cope with this problem, previous research suggested a combined pressure-velocity approach for NAH that provides certain advantages to rejection of interferences. This paper revisits this idea in a broader context of optimal array design and examines the feasibility of using unidirectional microphones in each channel of the array such that the robustness of inverse reconstruction is enhanced against interfering sources. As indicated in the simulation, the numerical noise in finite difference estimation of particle velocity can nullify the advantage of the well-conditioned velocity-based reconstruction. In the proposed approach, the characteristics of each array channel consisting of two microphones are tailored by taking into account not only the directivity, but also the robustness against self-noise. An objective function based on directivity index and white noise gain is exploited in a linear quadratic optimization of a two-element end-fire array. The proposed optimal array is validated in conjunction with the equivalent source model (ESM) -based NAH through numerical simulations, with an interfering source positioned behind the array. The results have shown the directive optimal array has yielded improved quality of images in comparison with conventional approaches in the presence of an interfering source and sensor noise.
机译:常规的近场声全息术(NAH)通常基于自由场假设,当实际环境中存在干扰源时,这可能会导致错误。为了解决这个问题,以前的研究提出了一种针对NAH的组合压力-速度方法,该方法为消除干扰提供了一定的优势。本文在最佳阵列设计的更广泛上下文中重新审视了这种想法,并研究了在阵列的每个通道中使用单向麦克风的可行性,从而增强了逆重构的鲁棒性,以免受到干扰源的影响。如仿真所示,粒子速度的有限差分估计中的数值噪声可能使基于条件良好的速度重建的优势无效。在所提出的方法中,不仅考虑方向性,而且考虑抗自噪声的鲁棒性,来定制由两个麦克风组成的每个阵列通道的特性。在两个单元端射阵列的线性二次优化中,利用了基于方向性指标和白噪声增益的目标函数。通过数值模拟,结合基于等效源模型(ESM)的NAH,对提出的最佳阵列进行了验证,其中干扰源位于阵列后面。结果表明,在存在干扰源和传感器噪声的情况下,与常规方法相比,定向最佳阵列产生了改进的图像质量。

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