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Application of frequency-domain neural networks to the active control of harmonic vibrations in nonlinear structural systems

机译:频域神经网络在非线性结构系统中谐波振动主动控制的应用

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The authors show how a nonlinear adaptive controller of quasi-neural architecture can be used to control harmonic vibrations even when it has to act through a nonlinear actuator element. The controller comprises a fixed nonlinearity to generate harmonics of the sinusoidal reference signal and a linear adaptive combiner. The coefficients in the adaptive combiner are adjusted using a steepest descent algorithm in which harmonic generation in the nonlinear system under control is taken into account. A neural model for this frequency domain description of a nonlinear system is discussed, and it is shown that using information derived from this model in the steepest descent algorithm amounts to backpropagating the error signal through the plant model.
机译:作者展示了即使当它必须通过非线性致动器元件而采用时,可以使用拟神经结构的非线性自适应控制器的非线性自适应控制器如何控制谐波振动。控制器包括固定的非线性,以产生正弦参考信号的谐波和线性自适应组合器。使用陡峭的缩小算法调整自适应组合器中的系数,其中考虑了非线性系统中的谐波产生。讨论了用于该频域描述非线性系统的神经模型,并示出了在最陡的缩放算法中使用从该模型导出的信息,以通过工厂模型来反叠误差信号。

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