强干扰环境下的阵列非同步测量研究
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郑州大学机械与动力工程学院 郑州 450001

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TN912

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国家自然科学基金(61873244)项目资助


Non-synchronous array measurement in high-interference environment
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School of Mechanical and Power Engineering, Zhengzhou University,Zhengzhou 450001, China

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    摘要:

    声学相对传递函数矩阵的估计是实现麦克风阵列多参考非同步测量的前提。针对在外场环境中存在强背景噪声导致现有多参考非同步测量误差较大的问题,本文建立基于总体最小二乘的声学相对传递函数矩阵的辨识方法,补全麦克风阵列扫描得到的互谱矩阵,并基于互谱矩阵分解得到的部分场实现声全息成像。结果表明,文中方法能够有效抑制低信噪比情形下背景噪声干扰对声学相对传递函数矩阵估计和麦克风互谱矩阵补全的影响,当信噪比低于10 dB时,误差能够减小2%以上,有效提高了麦克风阵列非同步成像精度。

    Abstract:

    The estimation of the relative acoustic transfer function is a prerequisite for implementing multi-reference non-synchronous measurements with a microphone array. In industrial test scenarios, strong background noise poses a significant challenge, resulting in substantial errors in multi-reference non-synchronous measurements. To address such issue, an identification approach for the relative acoustic transfer function matrix based on total least squares is established. The cross-spectral matrix obtained by scanning the microphone array is completed, and acoustic holography imaging is achieved using the partial field derived from the decomposition of the spectral correlation matrix. The results indicate that the proposed method can effectively mitigate the influence of background noise on the completion of the spectral correlation matrix of microphone measurements under low signal-to-noise ratio scenarios. When the signal-to-noise ratio is below 10 dB, the error can be reduced by more than 2%, thereby enhancing the non-synchronous imaging accuracy of the microphone array.

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刘璞,阮自康,张晶博,张二亮.强干扰环境下的阵列非同步测量研究[J].电子测量技术,2025,48(8):99-104

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  • 在线发布日期: 2025-05-23
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