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Assessment of Combustion Mechanical Noise Separation Techniques on a V8 Engine

机译:V8发动机燃烧机械噪声分离技术评估

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The noise radiated by an ICE engine results from a mixture of various complex sources such as combustion, injection, piston slap, turbocharger, etc. Some of these have been categorized as combustion related noise and others as mechanical noise. Of great concern is the assessment of combustion noise which, under some operating conditions, is likely to predominate over the other sources of noise. The residual noise, produced by various other sources, is commonly referred to as mechanical noise. Being able to extract combustion and mechanical noise is of prime interest in the development phase of the engine and also for diagnostic purposes. This paper presents the application of combustion mechanical noise separation techniques on a V8 engine. Three techniques, namely the multi regression analysis, the classical Wiener filter and the cyclostationary (synchronous) Wiener filter, have been investigated. The techniques have been applied to microphone recordings measured at one meter distance from an engine running on a test bench. Reference in-cylinder pressure sensors have been instrumented and synchronously acquired together with the microphones. Strengths and weaknesses of the techniques are assessed and presented in the paper. Finally a source separation technique is applied as a pre-processing step to the sound recordings measured on a microphone array. Sound source localization then allows to localize and quantify the combustion and mechanical sources of noise on the engine. This is illustrated with an application example.
机译:由冰发动机辐射的噪声是由各种复合源的混合物产生的,例如燃烧,注射,活塞扣,涡轮增压器等。其中一些被分类为燃烧相关噪音和其他作为机械噪声。非常关注的是对燃烧噪声的评估,在一些操作条件下,可能会占据其他噪声来源。由各种其他来源产生的残余噪声通常被称为机械噪声。能够提取燃烧和机械噪声是发动机的开发阶段的主要兴趣以及用于诊断目的。本文介绍了燃烧机械噪声分离技术在V8发动机上的应用。研究了三种技术,即多元回归分析,经典维纳滤波器和卷轴(同步)维纳滤波器。这些技术已应用于距离测试台上的发动机在一米的距离下测量的麦克风录像。参考缸内压力传感器已经被仪器和同步地与麦克风一起获取。本文评估和介绍了技术的优势和弱点。最后,将源分离技术作为预处理步骤应用于在麦克风阵列上测量的声音记录。声源定位然后允许本地化和量化发动机上的燃烧和机械源。这将用应用例说明。

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