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Random vibration control based on adaptive filter

机译:基于自适应滤波器的随机振动控制

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摘要

The random vibration adaptive control method is presented based on the recursive least-squares (RLS) adaptive filter. The power spectral density (PSD) of drive signal is updated based on the off-line identification of frequency response function (FRF) in conventional random vibration control system. And the pseudo-random drive signal generated by the conventional time-frequency transformation has leakage between frequency resolutions. The control precision is difficult to meet with conventional random vibration control method. The finite impulse response (FIR) filter is designed with the reference PSD in random vibration adaptive control system. And the time domain drive signal is generated by filtering a series of independent white noise. The RLS adaptive filter is designed to obtain the inverse model of the device under test (DUT) based on adaptive inverse control algorithm. The time domain drive signal is filtered by the inverse model so the PSD of the DUT output signal can replicate the reference PSD in high precision. Random vibration test results show the effectiveness of the proposed algorithm.
机译:提出了一种基于递推最小二乘自适应滤波器的随机振动自适应控制方法。在常规随机振动控制系统中,基于频率响应函数(FRF)的离线标识来更新驱动信号的功率谱密度(PSD)。并且,由传统的时频变换产生的伪随机驱动信号在频率分辨率之间具有泄漏。传统的随机振动控制方法难以达到控制精度。在随机振动自适应控制系统中,利用参考PSD设计了有限脉冲响应(FIR)滤波器。时域驱动信号是通过对一系列独立的白噪声进行滤波而产生的。 RLS自适应滤波器旨在基于自适应逆控制算法来获得被测设备(DUT)的逆模型。时域驱动信号由逆模型滤波,因此DUT输出信号的PSD可以高精度复制参考PSD。随机振动测试结果表明了该算法的有效性。

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