Institute of Sound and Vibration Research, Hefei University of Technology, Hefei 230009, People's Republic of China.
J Acoust Soc Am. 2012 Feb;131(2):1260-70. doi: 10.1121/1.3675004.
In previous studies, a sound field separation technique based on the equivalent source method (ESM) was successfully applied to separate the incoming and outgoing fields composing a non-free field. However, if the incoming wave is scattered by the source surface, the outgoing field is not the field that would be generated by the source in a free field. The object of the present work was to provide an equivalent source technique that allows the recovery of that free field in a noisy environment. In this approach, the incoming and outgoing fields, including the scattered and directly radiated fields on the measurement surface, are separated to obtain the free-field pressure that would be radiated by the source in an anechoic environment. The recovered free-field pressure is then used to reconstruct the whole free field of the source by using near-field acoustical holography based on the ESM, which makes the results equivalent to those that could be obtained from a free-field measurement. A theoretical description of the technique is given first, and then three numerical cases are investigated to demonstrate the ability of the proposed method.
在之前的研究中,一种基于等效源法(ESM)的声场分离技术成功地应用于分离构成非自由场的入射场和出射场。然而,如果入射波被源表面散射,出射场不是源在自由场中产生的场。本工作的目的是提供一种等效源技术,以便在噪声环境中恢复该自由场。在这种方法中,将分离包括测量表面上的散射和直接辐射场的入射场和出射场,以获得在消声环境中源辐射的自由场压力。然后,通过基于 ESM 的近场声学全息术,使用恢复的自由场压力来重建源的整个自由场,这使得结果等效于从自由场测量中获得的结果。首先给出了该技术的理论描述,然后研究了三个数值案例以验证所提出方法的能力。