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Experimental study on active structural acoustic control of rotating machinery using rotating piezo-based inertial actuators

机译:基于旋转压电惯性执行器的旋转机械主动结构声控制实验研究

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In this paper, two Piezo-Based Rotating Inertial Actuators (PBRIAs) are considered for the suppression of the structure borne noise radiated from rotating machinery. As add-on devices, they can be directly mounted on a rotational shaft, in order to intervene as early as possible in the transfer path between disturbance and the noise radiating surfaces. A MIMO (Multi-Input - Multi-Output) form of the FxLMS control algorithm is employed to generate the appropriate actuation signals, relying on a linear interpolation scheme to approximate Lime varying secondary plants. The proposed active vibration control approach is tested on an experimental Lest bed comprising a rotating shaft mounted in a frame to which a noise radiating plate is attached. The disturbance force is introduced by an electro-dynamic shaker. The experimental results show that when the shaft spins below 180 rpm, more than a 7 dB reduction can be achieved in terms of plate vibrations, along with a reduction in the same order of magnitude in terms of noise radiation. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在本文中,考虑了两个基于压电的旋转惯性执行器(PBRIA)来抑制旋转机械辐射的结构传播的噪声。作为附加设备,它们可以直接安装在旋转轴上,以便尽早干预干扰和噪声辐射表面之间的传递路径。 FxLMS控制算法的MIMO(多输入多输出)形式用于生成适当的驱动信号,这取决于线性插值方案来近似石灰变化的次级植物。提议的主动振动控制方法在实验的莱斯特床上进行了测试,该莱斯特床上的旋转轴安装在安装有噪声辐射板的框架中。干扰力由电动振动筛引入。实验结果表明,当轴以低于180 rpm的转速旋转时,就板振动而言,可以实现超过7 dB的降低,而在噪声辐射方面,则可以降低相同数量级。 (C)2015 Elsevier Ltd.保留所有权利。

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