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机构地区:[1]中国航空工业空气动力研究院,黑龙江哈尔滨150001
出 处:《现代电子技术》2014年第24期94-97,共4页Modern Electronics Technique
摘 要:气动噪声通常为宽频噪声,设计的阵列需要同时满足对高低频信号的测量需求,在确定了阵列测量频率范围的情况下,设计相应的阵列形式。在风洞气动噪声试验技术中,基于传声器阵列的噪声源定位技术是核心试验技术,噪声源定位的精准度主要取决于传声器阵列校准技术。传声器相位阵列安装之后,由于传声器频率响应和灵敏度不同,前置放大器、电缆的铺设、电源和信号调理器的频率响应以及传声器在阵列中的安装影响,会引起数据采集系统各测量通道间固有的相位差和幅值差。修正传声器的相位差和幅值差使得所有的传声器幅频响应一致,保证试验结果的准度。Aerodynamic noise is usually broadband noise. The designed array needs to satisfy the measurement require?ments of both high and low frequency signals. The corresponding array form is designed when the frequency range of array mea?surement is determined. The noise source localization technology based on microphone array is the core test technique in the wind tunnel aerodynamic noise test technology. The accuracy of noise source localization depends mainly on the microphone ar?ray calibration technique. After the microphone phase array is installed,different frequency response and sensitivity,preamplifier, cable laying,power supply,frequency response of signal conditioner and the installation of microphone array can cause the phase difference and amplitude difference among all measurement channels in the data acquisition system. Correction of phase difference and amplitude difference of microphones can make all the microphone frequency responses consistent and ensure the accuracy of test result.
分 类 号:TN912.3[电子电信—通信与信息系统]
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