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Active control of axial-flow fan noise using magnetic bearings

机译:使用电磁轴承主动控制轴流风扇噪声

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In this paper we present a novel approach to reducing blade-rate noise of axial-flow fans. By using magnetic bearings as a noise control actuator, it is possible to collocate the anti-noise source with the disturbance noise source. This approach allows for global noise reduction throughout the sound field. A DC motor connected to a fan by a short rigid shaft was used to demonstrate this approach. The shaft was supported in the radial and axial directions by magnetic bearings. The bearings provide position control of the shaft and fan; this position control can be used to vibrate the fan at a desired frequency and amplitude. Controlled vibration of the fan allows its use as a speaker in an active noise control scheme. Noise control was implemented on a dedicated digital signal processor using a least mean square algorithm. The output of the noise control algorithm supplies the position commands for the magnetic bearing controller. Experimental data showed that by actuating the axial thrust bearing, the noise output of a fan could be reduced by 4 dB at the error microphone, and 3 dB at points away from the error microphone.
机译:在本文中,我们提出了一种减少轴流风扇叶片速率噪声的新颖方法。通过将电磁轴承用作噪声控制执行器,可以将抗噪声源与干扰噪声源并置。这种方法可以降低整个声场的整体噪声。通过短刚性轴连接到风扇的直流电动机用于演示此方法。轴由电磁轴承沿径向和轴向方向支撑。轴承可控制轴和风扇的位置;该位置控制可用于使风扇以所需的频率和幅度振动。风扇的受控振动允许其在有源噪声控制方案中用作扬声器。噪声控制是在专用数字信号处理器上使用最小均方算法实现的。噪声控制算法的输出为电磁轴承控制器提供位置命令。实验数据表明,通过驱动轴向推力轴承,可以在误差麦克风处将风扇的噪声输出降低4 dB,而在远离误差麦克风的点处可以将风扇的噪声输出降低3 dB。

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