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Design and Performance Analysis of Low Cost Acoustic Chamber for Electric Machines

机译:电机用低成本声室的设计与性能分析

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This paper discusses the design and performance analysis of low-cost acoustic chamber for measurement of acoustic noise and vibration of electric machines. The purpose of this paper is to find the parameters that allow the characterization of acoustic chamber thereby making an attempt in deriving and obtaining the data of acoustic chamber. The parameters that are being calculated are acoustic transfer function, reverberation time, sound power level and cut-off frequency of acoustic chamber. To obtain the transfer function of acoustic chamber, a pair of microphones and amplifier as a source of sound have been used. Based on the results of transfer functions obtained between the pair of microphones, the cut-off frequency of acoustic chamber is determined and validated through Inverse Square Law. Noise measurements are conducted in both an ordinary environment (laboratory) and acoustic chamber. The acoustic chamber provides the free-field conditions, which satisfy the standard parameters required for the design and test for acoustic chamber. The results obtained both in an ordinary environment and acoustic chamber are compared to produce useful practical information about the noise level change caused by sound fields. The results obtained are found to be helpful in understanding the physical features and characteristics of acoustic chamber.
机译:本文讨论了用于测量电机噪声和振动的低成本声学室的设计和性能分析。本文的目的是找到允许表征声学腔室的参数,从而尝试得出和获得声学腔室的数据。正在计算的参数是声学传递函数,混响时间,声功率级和声学室的截止频率。为了获得声学室的传递函数,已使用一对麦克风和放大器作为声音源。根据在一对麦克风之间获得的传递函数的结果,确定声学室的截止频率,并通过平方反比定律进行验证。噪声测量是在普通环境(实验室)和声学室中进行的。声室提供自由场条件,这些条件满足设计和测试声室所需的标准参数。比较在普通环境和声学腔室中获得的结果,以产生关于声场引起的噪声级变化的有用实用信息。发现获得的结果有助于理解声学室的物理特征和特性。

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