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Active reduction of device multi-tonal noise by controlling vibration of multiple walls of the device casing

机译:通过控制装置壳体多壁的振动,通过控制振动来激活装置多色调噪声

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The aim of this paper is to verify the idea of active reduction of device and machinery noise by controlling the vibration of their casing. The Active Structural Acoustic Control (ASAC) technology known from the literature for reducing noise propagating through a single wall is going to be applied to multiple walls of the casing, thus globally protecting the user and environment from excessive noise generated by the machine or the device. Based on previous research by the authors, pairs of vibration actuators and sensors are installed on the walls in order to provide highest sound insulation efficiency. Two adaptive control strategies are investigated - feedfoward and Internal Model Control feedback, both with the adaptive Leaky Normalised Filtered-x Least Mean Square (FxLMS) algorithm used to update control filter parameters. The control systems are experimentally verified by using a laboratory set-up, in presence of a multi-tonal primary disturbance. Obtained results are reported, discussed, and conclusions for future research are drawn.
机译:本文的目的是通过控制壳体的振动来验证设备和机械噪声的主动减少的思想。从文献中已知的用于降低通过单壁传播的噪声的有源结构声学控制(ASAC)技术将施加到壳体的多个壁上,从而全局保护用户和环境免受机器或设备产生的过大噪声。根据先前作者的研究,振动执行器和传感器对墙壁上安装,以提供最高的隔音效率。调查了两种自适应控制策略 - FeedFoward和内部模型控制反馈,既具有用于更新控制滤波器参数的自适应泄漏归一化过滤器-X最小均线(FXLMS)算法。通过使用多音调初级干扰,通过使用实验室设置进行实验验证控制系统。据报道,讨论了结果,并讨论了未来研究的结论。

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