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Hybrid patch near-field acoustic holography based on Kalman filter

机译:基于卡尔曼滤波的混合斑块近场声全息

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摘要

The wave superposition method (WSM) is a classical method for reconstructing the sound field of an arbitrary sound source, but its main drawback is the uncertainty of equivalent source configuration. To overcome this problem, a hybrid patch near-field acoustic holography based on Kalman filter (KF-HPNAH) is proposed. The algorithm consists of three steps: (a) the calculation of the three-dimensional (3D) virtual motion trajectory of sound source using the projected coordinates of the sound source on multiple hologram planes; (b) the application of KF to the trajectory, thus improving the accuracy of 3D localization of the sound source; (c) the formulation of the equivalent source configuration strategy of the WSM based on the 3D coordinates. The KF-HPNAH can effectively reduce the dimension of a WSM matrix and improve the accuracy of sound field reconstruction. Numerical simulations and experiments are carried out to verify the effectiveness of the proposed method. The results show that the KF-HPNAH solves the uncertainty problem of equivalent source configuration of WSM successfully. Compared to the existing methods, KF-HPNAH has the best reconstruction accuracy. The proposed method can thus be used to localize the sound source and reconstruct the sound field radiated from an arbitrary sound source at frequencies between 200 Hz and 900 Hz. (C) 2018 Elsevier Ltd. All rights reserved.
机译:波浪叠加法(WSM)是用于重建任意声源声场的经典方法,但其主要缺点是等效声源配置的不确定性。为了克服这个问题,提出了一种基于卡尔曼滤波器(KF-HPNAH)的混合斑块近场声全息技术。该算法包括三个步骤:(a)使用声源在多个全息图平面上的投影坐标来计算声源的三维(3D)虚拟运动轨迹; (b)将KF应用于轨迹,从而提高声源3D定位的准确性; (c)基于3D坐标制定WSM的等效源配置策略。 KF-HPNAH可以有效地减小WSM矩阵的维数,提高声场重建的准确性。数值模拟和实验进行了验证该方法的有效性。结果表明,KF-HPNAH成功解决了WSM等效源配置的不确定性问题。与现有方法相比,KF-HPNAH具有最佳的重建精度。因此,所提出的方法可以用于定位声源并重建从任意声源以200 Hz至900 Hz之间的频率辐射的声场。 (C)2018 Elsevier Ltd.保留所有权利。

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