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A new laser vibrometry-based 2D selective intensity method for source identification in reverberant fields: part II. Application to an aircraft cabin

机译:一种新的基于激光振动测量的二维选择性强度方法,用于在混响场中进行声源识别:第二部分。应用于飞机机舱

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The selective intensity technique is a powerful tool for the localization of acoustic sources and for the identification of the structural contribution to the acoustic emission. In practice, the selective intensity method is based on simultaneous measurements of acoustic intensity, by means of a couple of matched microphones, and structural vibration of the emitting object. In this paper high spatial density multi-point vibration data, acquired by using a scanning laser Doppler vibrometer, have been used for the first time. Therefore, by applying the selective intensity algorithm, the contribution of a large number of structural sources to the acoustic field radiated by the vibrating object can be estimated. The selective intensity represents the distribution of the acoustic monopole sources on the emitting surface, as if each monopole acted separately from the others. This innovative selective intensity approach can be very helpful when the measurement is performed on large panels in highly reverberating environments, such as aircraft cabins. In this case the separation of the direct acoustic field (radiated by the vibrating panels of the fuselage) and the reverberant one is difficult by traditional techniques. The work shown in this paper is the application of part of the results of the European project CREDO (Cabin Noise Reduction by Experimental and Numerical Design Optimization) carried out within the framework of the EU. Therefore the aim of this paper is to illustrate a real application of the method to the interior acoustic characterization of an Alenia Aeronautica ATR42 ground test facility, Alenia Aeronautica being a partner of the CREDO project.
机译:选择强度技术是用于声源定位和确定对声发射的结构贡献的有力工具。实际上,选择强度方法是基于通过一对匹配的麦克风同时测量声强和发射物体的结构振动。在本文中,首次使用通过扫描激光多普勒振动计获得的高空间密度多点振动数据。因此,通过应用选择性强度算法,可以估计出大量结构源对振动物体辐射的声场的贡献。选择性强度表示声单极子源在发射表面上的分布,就好像每个单极子彼此分开作用一样。当在高度回响的环境(例如飞机机舱)中的大型面板上进行测量时,这种创新的选择性强度方法将非常有用。在这种情况下,传统技术很难将直接声场(由机身的振动板辐射)与混响声区分开。本文显示的工作是在欧盟框架内实施的欧洲项目CREDO(通过实验和数值设计优化降低机舱噪声)的部分结果的应用。因此,本文的目的是说明该方法在Alenia Aeronautica ATR42地面测试设施的内部声学表征中的实际应用,Alenia Aeronautica是CREDO项目的合作伙伴。

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