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Structural vibration control of the magnetic flywheel based on GA-PID neural network

机译:基于GA-PID神经网络的磁飞轮的结构振动控制

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To overcome the difficult in modeling the mode theory for magnetic flywheel, by non-parametric frequency domain identification method for identification of system model, this paper select the PID neural network nonlinear intelligent control methods based on GA. Used a method based on iterative process to suppress the resonance, combined with zero-pole theory, this research designed a GA-based PID neural network identification controller to address the modal vibration suppression problems in the external rotor flywheel .The experiments for this paper proved the effectiveness of iterative process, and the controller can restrain the system mode vibration well.
机译:为了克服磁飞轮的模式理论克服难度,通过非参数频域识别方法来识别系统模型,本文选择了基于GA的PID神经网络非线性智能控制方法。使用了一种基于迭代过程的方法来抑制谐振,结合零极理,设计了一种基于GA的PID神经网络识别控制器,用于解决外部转子飞轮中的模态振动抑制问题。本文证明了本文的实验迭代过程的有效性,以及控制器可以很好地抑制系统模式振动。

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