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基于终端滑模控制器的模糊多层递归神经网络非线性系统控制。

Fuzzy Multiple Hidden Layer Recurrent Neural Control of Nonlinear System Using Terminal Sliding-Mode Controller.

出版信息

IEEE Trans Cybern. 2022 Sep;52(9):9519-9534. doi: 10.1109/TCYB.2021.3052234. Epub 2022 Aug 18.

Abstract

This study designs a fuzzy double hidden layer recurrent neural network (FDHLRNN) controller for a class of nonlinear systems using a terminal sliding-mode control (TSMC). The proposed FDHLRNN is a fully regulated network, which can be simply considered as a combination of a fuzzy neural network (FNN) and a radial basis function neural network (RBF NN) to improve the accuracy of a nonlinear approximation, so it has the advantages of these two neural networks. The main advantage of the proposed new FDHLRNN is that the output values of the FNN and DHLRNN are considered at the same time, and the outer layer feedback is added to increase the dynamic approximation ability. FDHLRNN was designed to approximate the nonlinear sliding-mode equivalent control term to reduce the switching gain. To ensure the best approximation capability and control performance, the proposed FDHLRNN using TSMC is applied for the second-order nonlinear model. Two simulation examples are implemented to verify that the proposed FDHLRNN has faster convergence speed and the FDHLRNN with TSMC has good dynamic property and robustness, and a hardware experimental study with an active power filter proves the feasibility of the method.

摘要

本研究设计了一种基于终端滑模控制(TSMC)的模糊双隐层递归神经网络(FDHLRNN)控制器,用于一类非线性系统。所提出的 FDHLRNN 是一个完全调节网络,可以简单地视为模糊神经网络(FNN)和径向基函数神经网络(RBF NN)的组合,以提高非线性逼近的精度,因此它具有这两种神经网络的优点。所提出的新 FDHLRNN 的主要优点是同时考虑 FNN 和 DHLRNN 的输出值,并添加外部层反馈以提高动态逼近能力。FDHLRNN 被设计用来逼近非线性滑模等效控制项,以减少开关增益。为了确保最佳的逼近能力和控制性能,提出的基于 TSMC 的 FDHLRNN 用于二阶非线性模型。进行了两个仿真示例来验证所提出的 FDHLRNN 具有更快的收敛速度,并且具有 TSMC 的 FDHLRNN 具有良好的动态性能和鲁棒性,并且有源电力滤波器的硬件实验研究证明了该方法的可行性。

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