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首页> 外文期刊>IEE Proceedings. Part D >Fuzzy neural network position controller for ultrasonic motor drive using push-pull DC-DC converter
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Fuzzy neural network position controller for ultrasonic motor drive using push-pull DC-DC converter

机译:使用推挽式DC-DC转换器的超声电机驱动的模糊神经网络位置控制器

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摘要

A fuzzy neural network (FNN) position controller is proposed to control the ultrasonic motor (USM) servo drive. The FNN controller is trained on-line using the proposed delta adaptation law. Moreover, a new driving circuit for the travelling-wave type ultrasonic motor (USM), which is a push-pull DC-DC power converter and a two-phase series-resonant inverter combination, is presented. First, the network structure, the on-line learning algorithm and the proof of convergence of the learning algorithm of the FNN are described. Next, the operating principles of the proposed driving circuit for the USM are described in detail. Then, the FNN position controller is implemented to control the USM drive to reduce the influence of parameter uncertainties and external disturbances. The effectiveness of the proposed driving circuit and FNN controller is demonstrated by some experimental results.
机译:提出了一种模糊神经网络(FNN)位置控制器来控制超声电机(USM)伺服驱动器。 FNN控制器使用建议的增量自适应定律进行在线训练。此外,提出了一种行波型超声波电动机(USM)的新型驱动电路,该电路是推挽式DC-DC功率变换器和两相串联谐振逆变器组合。首先,描述了神经网络的网络结构,在线学习算法以及学习算法的收敛性证明。接下来,详细描述所提出的用于USM的驱动电路的工作原理。然后,使用FNN位置控制器来控制USM驱动器,以减少参数不确定性和外部干扰的影响。实验结果证明了所提出的驱动电路和FNN控制器的有效性。

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