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In-situ source path contribution analysis of structure borne road noise

机译:结构性道路噪声的原地声源贡献分析

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Source-path-contribution (SPC) analysis, also known as transfer path analysis (TPA), is a technique widely used in the automotive industry for rank ordering noise and vibration sources. The SPC approach is known to provide reliable diagnostic information but is time consuming to apply. In this paper, a faster SPC approach that allows all measurements to be performed in-situ is outlined and tested. For validation purposes a classic example consisting of a vehicle's suspension system (considered a vibration source) attached to a vehicle body (receiver) is analysed. It is found that structure borne noise inside the vehicle can be predicted well by either the conventional or the novel in-situ SPC approaches and that both methods give the same diagnostic information in terms of the rank ordering of path contributions. Thus, the new in-situ approach provides results at least as reliable as the conventional inverse SPC approach but has significant practical advantages in terms of reduced test time, transferability of data and flexibility in the location of the source-receiver interface. An additional investigation also demonstrates the feasibility of including rotational motions and moments in the analysis and it is shown that improved accuracy can be achieved as a result.
机译:源路径贡献(SPC)分析,也称为传递路径分析(TPA),是汽车工业中广泛使用的噪声和振动源排序技术。众所周知,SPC方法可提供可靠的诊断信息,但应用很费时间。在本文中,概述并测试了一种更快的SPC方法,该方法允许在现场进行所有测量。为了进行验证,分析了一个经典示例,该示例由附接到车身(接收器)的车辆悬架系统(被视为振动源)组成。发现通过传统的或新颖的原位SPC方法可以很好地预测车辆内部的结构噪声,并且两种方法在路径贡献的等级排序方面给出相同的诊断信息。因此,新的原位方法至少可以提供与常规逆SPC方法一样可靠的结果,但在减少测试时间,数据可传递性以及源-接收器接口位置的灵活性方面具有显着的实际优势。进一步的研究还表明了在分析中包括旋转运动和力矩的可行性,结果表明可以提高精度。

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