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Measuring the higher order sinusoidal input describing functions of a non-linear plant operating in feedback

机译:测量描述正反馈的非线性设备功能的高阶正弦输入

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In this paper two measuring techniques are presented for measuring the higher order sinusoidal input describing functions (HOSIDF) of a non-linear plant operating in feedback. The HOSIDF relate the magnitude and phase of the harmonics of the periodic response of a non-linear system to the magnitude and phase of the sinusoidal excitation. In a controlled system the harmonics generated by the nonlinear system will be fed back to the input changing the sinusoidal excitation into a harmonic excitation. The first method applies linear techniques to compensate the bias caused by the harmonic components in the excitation signal. The second method uses a modified repetitive control scheme to suppress the harmonic components in the excitation signal. The effectiveness of both methods is tested in simulations of a mass subjected to Coulomb friction, Stribeck effect and hysteresis in the pre-sliding regime. The friction forces are modeled with the modified Leuven friction model. The results are compared with the HOSIDF simulated under open-loop condition. Both methods prove able to produce reliable results.
机译:在本文中,提出了两种测量技术,用于测量在反馈中运行的非线性设备的高阶正弦输入描述函数(HOSIDF)。 HOSIDF将非线性系统的周期性响应的谐波的幅度和相位与正弦激励的幅度和相位相关。在受控系统中,非线性系统生成的谐波将反馈到输入,从而将正弦激励变为谐波激励。第一种方法采用线性技术来补偿由激励信号中的谐波分量引起的偏置。第二种方法使用改进的重复控制方案来抑制激励信号中的谐波分量。两种方法的有效性都通过模拟在预滑动状态下承受库仑摩擦,斯特里贝克效应和磁滞现象的质量进行了测试。摩擦力用改进的鲁汶摩擦模型建模。将结果与开环条件下模拟的HOSIDF进行比较。两种方法都证明能够产生可靠的结果。

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