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IDENTIFICATION OF COMPLEX SOUND SOURCE BY THE PHASE CONJUGATION METHOD

机译:相位共轭法识别复杂的声源

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complex sources. A plate subject to a point force and a pulsating cube are involved to verify the effectiveness of the method. The surface pressure, the surface normal velocity, the radiation power, and the intensity are reconstructed with different phase conjugation arrays. Numerical results show that the best identification results could be achieved by an array made of dipole transceivers based on pressure gradient measurements in the near field. Phase conjugation arrays achieve a very high resolution to identify the surface pressure and normal velocity and reconstruct the radiation power and the intensity very well. The phase conjugation method for identification and localization of the radiated field has advantages of posing no difficulties and using a small number of measurements and it is natural to use patch method. These features may make the phase conjugation method a powerful noise diagnostic tool. For an array in the far field only the location of the maximum pressure response could be identified.
机译:复杂的来源。涉及受点力作用的平板和脉动立方体以验证该方法的有效性。用不同的相位共轭阵列重建表面压力,表面法向速度,辐射功率和强度。数值结果表明,由偶极子收发器制成的阵列可以基于近场中的压力梯度测量来获得最佳识别结果。相位共轭阵列具有很高的分辨率,可以识别表面压力和法向速度,并很好地重建辐射功率和强度。用于辐射场的识别和定位的相位共轭方法具有无困难且使用少量测量的优点,并且使用贴片法是自然的。这些功能可能使相位共轭方法成为功能强大的噪声诊断工具。对于远场中的阵列,只能识别最大压力响应的位置。

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