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Reduction of the inner vehicle noise level by active vibration damping of the rear axle drive

机译:通过后轴驱动的主动振动阻尼减少内部车辆噪声水平

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For rear-wheel and four-wheel drive vehicles the so-called rear axle gear whine is a well-known acoustic phenomenon. The focus of the research project conducted by Volkswagen AG and the Fraunhofer Institute for Machine Tools and Forming Technology IWU which is presented here was a marked reduction of the noise phenomenon for vehicle interiors by means of an active regulatory system for absorbing vibrations. Because this noise, caused by the gear mesh in the rear axle gear units, is dependent on the driving speed and load state, a permanent frequency and phase adjustment in relevant speed ranges is necessary. Regulatory concepts that execute real-time frequency detection and also continually determine the energy content of the excitation signal were developed for this purpose. Within the framework of the project, two actuator concepts were implemented and tested on the vehicle. These included a piezo stack actuator as well as an inertial mass actuator. Both actuator systems achieved a clear reduction of the interior noise pressure level in the relevant operating state. The effect is clearly (and subjectively) perceptible to vehicle occupants and has been assessed by experienced acousticians as an improvement of 2 Bl.
机译:对于后轮和四轮驱动车辆,所谓的后轴齿轮呜呜声是一种众所周知的声学现象。由德国大众汽车公司和Fraunhofer研究所的机床和成形技术IWU进行的研究项目,这里介绍的重点是通过吸收振动的主动监管系统来显着降低,在汽车内饰中的噪声现象。因为这种噪声由后轴齿轮单元中的齿轮网引起的,所以取决于驱动速度和负载状态,所以需要具有相关速度范围的永久频率和相位调整。为此目的开发了执行实时频率检测和连续确定激励信号的能量含量的监管概念。在该项目的框架内,在车辆上实施并测试了两个执行器概念。这些包括压电堆叠致动器以及惯性质量致动器。两个致动器系统在相关的操作状态下实现了内部噪声压力水平的清晰减小。车辆乘员的效果显然(和主观地)可察觉,并通过经验丰富的声学管理员评估为2 BL的改善。

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