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Noise Contribution Analysis at Suspension Interfaces Using Different Force Identification Techniques

机译:使用不同的力识别技术悬架接口处的噪声贡献分析

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Road-tire induced vibrations are in many vehicles determining the interior noise levels in (semi-) constant speed driving. The understanding of the noise contributions of different connections of the suspension systems to the vehicle is essential in improvement of the isolation capabilities of the suspension- and body-structure. To identify these noise contributions, both the forces acting at the suspension-to-body connections points and the vibro-acoustic transfers from the connection points to the interior microphones are required. In this paper different approaches to identify the forces are compared for their applicability to road noise analysis. First step for the force identification is the full vehicle operational measurement in which target responses (interior noise) and indicator responses (accelerations or other) are measured. Secondly, the operational data is used in different methods for force-identification: matrix inversion based, mount-stiffness based, or parametric force-identification. The choice for each of those methods can be based on a suspension characteristic as the stiffness of the mounts, the available space for sensor instrumentation or other practical limitations.
机译:道路轮胎诱导的振动在许多车辆中,确定了(半)恒定速度驾驶中的内部噪声水平。对悬架系统的不同连接的噪声贡献对车辆的噪声贡献对于改善悬浮液和体结构的隔离能力至关重要。为了识别这些噪声贡献,需要在悬架到主体连接点和从连接点到内部麦克风的振动声转移的力。在本文中,将不同的方法识别力的识别力与其对道路噪声分析的适用性。力识别的第一步是测量目标响应(内部噪声)和指示器响应(加速度或其他)的全车辆操作测量。其次,操作数据以不同的方法用于强制识别:基于矩阵反转,基于刚度或参数力识别。每个方法的选择可以基于悬架特性作为安装座的刚度,传感器仪器的可用空间或其他实际限制。

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