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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Fuzzy–Neural Sliding-Mode Control for DC–DC Converters Using Asymmetric Gaussian Membership Functions
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Fuzzy–Neural Sliding-Mode Control for DC–DC Converters Using Asymmetric Gaussian Membership Functions

机译:使用非对称高斯隶属函数的DC-DC转换器的模糊神经滑模控制

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A fuzzy–neural sliding-mode (FNSM) control system is developed to control power electronic converters. The FNSM control system comprises a neural controller and a compensation controller. In the neural controller, an asymmetric fuzzy neural network is utilized to mimic an ideal controller. The compensation controller is designed to compensate for the approximation error between the neural controller and the ideal controller. An online training methodology is developed in the Lyapunov sense; thus, the stability of the control system can be guaranteed. Finally, to investigate the effectiveness of the FNSM control scheme, it is applied to control a pulsewidth-modulation-based forward dc–dc converter. Experimental results show that the proposed FNSM control system is found to achieve favorable regulation performances even under input-voltage and load-resistance variations.
机译:开发了一种模糊神经滑模(FNSM)控制系统来控制功率电子转换器。 FNSM控制系统包括神经控制器和补偿控制器。在神经控制器中,利用非对称模糊神经网络来模仿理想控制器。补偿控制器设计用于补偿神经控制器和理想控制器之间的近似误差。在李雅普诺夫意义上开发了一种在线培训方法;因此,可以保证控制系统的稳定性。最后,为了研究FNSM控制方案的有效性,将其应用于控制基于脉宽调制的正向dc-dc转换器。实验结果表明,所提出的FNSM控制系统即使在输入电压和负载电阻变化的情况下也能实现良好的调节性能。

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