首页> 外文期刊>Neurocomputing >LMI-based criterion for global Mittag-Leffler lag quasi-synchronization of fractional-order memristor-based neural networks via linear feedback pinning control
【24h】

LMI-based criterion for global Mittag-Leffler lag quasi-synchronization of fractional-order memristor-based neural networks via linear feedback pinning control

机译:基于LMI的全球Mittag-Leffler LAG准则通过线性反馈钉控制的基于小数阶Memristor的神经网络同步

获取原文
获取原文并翻译 | 示例

摘要

This paper addresses global Mittag-Leffler lag quasi-synchronization (GMLQS) of fractional-order memristor-based neural networks (FMNNs). Firstly, for a general class of fractional-order nonlinear systems with interval uncertainties, a kind of linear feedback pinning controller, which works by feeding back partial state errors to the partial controlled variables, is designed to achieve global Mittag-Leffler ultimate boundedness (GMUB). Correspondingly, a GMUB criterion in the form of linear matrix inequality (LMI) is derived with the aid of a Lyapunov function and a newly established fractional-order differential inequality. Then, the linear feedback pinning controller is employed for GMUB of the synchronization error system, which is equivalent to GMLQS of FMNNs. Since there exists the propagation delay between drive-response FMNNs and the synchronization error system can not be obtained straightforwardly, an identical equation about Caputo's fractional derivatives is established to overcome this difficulty. Moreover, the detailed pinning control scheme design procedures for a prescribed GMLQS performance are presented, where the performance involves both ultimate error bound and transient behavior. In the control scheme, an auxiliary LMI and an optimization objective function are introduced, which can significantly reduce control cost. Finally, a numerical example is presented to show the feasibility of the control scheme. The results obtained in this paper have improved the existing criterion on quasi synchronization of FMNNs, and will also provide a novel insight into pinning control of fractional order nonlinear systems. (c) 2020 Elsevier B.V. All rights reserved.
机译:本文涉及基于分数阶Memitristor的神经网络(FMNN)的全球Mittag-Leffler LAG准同步(GMLQ)。首先,对于具有间隔不确定性的一般类别的分数级非线性系统,一种通过对部分控制变量馈送部分状态误差来实现的一种线性反馈固定控制器,旨在实现全球Mittag-Leffler终极界限(Gmub )。相应地,借助Lyapunov函数和新建立的分数级差分不等式导出以线性矩阵不等式(LMI)形式的GMUB标准。然后,用于GMBUB的线性反馈钉扎控制器用于同步误差系统,其等同于FMNN的GMLQ。由于存在驱动响应FMNN和同步误差系统之间的传播延迟,因此不能直截了当地获得Caputo的分数衍生物的相同方程来克服这种困难。此外,介绍了规定的GMLQS性能的详细固定控制方案设计过程,其中性能涉及终极误差绑定和瞬态行为。在控制方案中,引入辅助LMI和优化目标函数,这可以显着降低控制成本。最后,提出了一个数字示例以显示控制方案的可行性。本文获得的结果改善了FMNN的准同步的现有标准,还将提供对小数阶非线性系统的钉扎控制的新颖洞察。 (c)2020 Elsevier B.v.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号