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An Intelligent Second-Order Sliding-Mode Control for an Electric Power Steering System Using a Wavelet Fuzzy Neural Network

机译:基于小波模糊神经网络的电动助力转向系统智能二阶滑模控制

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摘要

An intelligent second-order sliding-mode control (I2OSMC) using a wavelet fuzzy neural network with an asymmetric membership function (WFNN-AMF) estimator is proposed in this study to control a six-phase permanent magnet synchronous motor (PMSM) for an electric power steering (EPS) system. First, the dynamics of the steer-by-wire (SBW) EPS system and six-phase PMSM drive system with a lumped uncertainty are described in detail. Then, to alleviate the chattering phenomena in a traditional sliding-mode control (SMC), a second-order sliding-mode control (2OSMC) is designed. Moreover, the I2OSMC is developed to improve the required control performance of the EPS system. In the I2OSMC, the WFNN-AMF estimator with accurate approximation capability is employed to estimate the lumped uncertainty. Furthermore, the adaptive learning algorithms for the online training of the WFNN-AMF are derived using the Lyapunov theorem to guarantee the asymptotical stability of the closed-loop system. In addition, a 32-bit floating-point digital signal processor (DSP), i.e., TMS320F28335, is adopted for the implementation of the proposed control approach. Finally, some experimental results are illustrated to demonstrate the validity of the proposed I2OSMC using the WFNN-AMF estimator for the EPS system.
机译:提出了一种基于小波模糊神经网络的非对称隶属度函数(WFNN-AMF)估计器的智能二阶滑模控制(I2OSMC),用于控制电机的六相永磁同步电动机(PMSM)。动力转向(EPS)系统。首先,详细介绍了具有集中不确定性的线控转向(SBW)EPS系统和六相PMSM驱动系统的动力学特性。然后,为了减轻传统滑模控制(SMC)中的颤动现象,设计了一种二阶滑模控制(2OSMC)。此外,I2OSMC的开发旨在提高EPS系统所需的控制性能。在I2OSMC中,采用具有精确近似能力的WFNN-AMF估计器来估计集总不确定性。此外,使用李雅普诺夫定理导出了用于WFNN-AMF在线训练的自适应学习算法,以确保闭环系统的渐近稳定性。此外,采用32位浮点数字信号处理器(DSP)TMS320F28335来实现所提出的控制方法。最后,通过一些实验结果说明了使用WFNN-AMF估计器对EPS系统提出的I2OSMC的有效性。

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