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Method Using Multiple Regression Analysis to Separate Engine Radiation Noise into the Contributions of Combustion Noise and Mechanical Noise in the Time Domain

机译:使用多元回归分析的方法将发动机辐射噪声分离成时域内燃烧噪声和机械噪声的贡献

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摘要

A technique was created to separate the contributions of combustion noise and mechanical noise to engine noise in the time domain in order to achieve efficient measures for enhancing the sound quality of combustion noise. There is an existing technique based on 1/3 octave band analysis that is known as a method for separating the contributions to engine radiation noise, but this technique cannot provide time-domain data. Therefore, the author has proposed a technique that separates engine radiation noise into combustion noise and mechanical noise in the time domain by finding the combustion noise for each cylinder and calculating its structural response function by considering its real and imaginary components. Results of analysis of actual engine radiation noise with this technique confirmed that combustion noise, which is characterized by strong pulsation, and irregular mechanical noise can be separated in the time domain with good precision. Moreover, the structural response function, combustion noise, and mechanical noise characteristics showed a valid changing trend in response to changes in cylinder pressure and structural specifications. This demonstrates the effectiveness of the technique.
机译:创建了一种技术,以将燃烧噪声和机械噪声与时域中的发动机噪声分开,以实现提高燃烧噪声的音质的有效措施。基于1/3八度频带分析存在现有技术,称为将贡献分离为发动机辐射噪声的方法,但该技术不能提供时域数据。因此,作者提出了一种技术,该技术通过寻找每个气缸的燃烧噪声并通过考虑其真实和虚部来计算其结构响应功能来将发动机辐射噪声分离成时域的燃烧噪声和机械噪声。这种技术的实际发动机辐射噪声分析结果证实了燃烧噪声,其特征在于强烈的脉动,并且不规则的机械噪声可以在时域中分离,具有良好的精度。此外,结构响应函数,燃烧噪声和机械噪声特性响应圆柱形压力和结构规格的变化而有效的变化趋势。这证明了该技术的有效性。

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