Korea Atomic Energy Research Institute (KAERI), Daejeon, 34057, Republic of Korea.
Department of Electrical and Electronic Engineering, Xi'an Jiaotong-Liverpool University, Suzhou, 215123, China.
Neural Netw. 2024 Apr;172:106081. doi: 10.1016/j.neunet.2023.12.035. Epub 2023 Dec 23.
Synchronization between neural networks (NNs) has been intensively investigated to analyze stability, convergence properties, neuronal behaviors and response to various inputs. However, synchronization techniques of NNs with gated recurrent units (GRUs) have not been provided until now due to their complicated nonlinearity. In this paper, we address the sampled-data synchronization problems of GRUs for the first time, and propose controller design methods using discretely sampled control inputs to synchronize master and slave GRUs. The master and slave GRUs are mathematically modeled as a linear parameter varying (LPV) system in which the parameter of the slave GRUs is constructed independently of the master GRUs. This distinctive modeling feature provides flexibility to extend the existing master and slave NNs into a more general structure. Indeed, the sampled-data synchronization can be achieved by formulating the design condition in terms of linear matrix inequalities (LMIs). The novel sampled-data synchronization criteria are devised by combining the H controller design with the looped-functional approach. The synthesized synchronization controllers guarantee not only asymptotic stability of the synchronization error system with aperiodic sampling, but also provides a satisfactory H control performance. Moreover, the communication efficiency is improved by using the proposed method in which the sampled-data synchronization controller is combined with the event-triggered mechanism. Finally, the numerical example validates the proposed theoretical contributions via simulation results.
神经网络(NNs)的同步已经被深入研究,以分析稳定性、收敛特性、神经元行为以及对各种输入的响应。然而,由于门控循环单元(GRUs)的复杂性,直到现在还没有提供它们的同步技术。在本文中,我们首次解决了 GRUs 的采样数据同步问题,并提出了使用离散采样控制输入来同步主从 GRUs 的控制器设计方法。主从 GRUs 被数学建模为一个线性参数变化(LPV)系统,其中从 GRUs 的参数独立于主 GRUs 构建。这种独特的建模特点提供了灵活性,可以将现有的主从 NNs 扩展到更一般的结构。事实上,可以通过以线性矩阵不等式(LMIs)的形式来制定设计条件来实现采样数据同步。通过将 H 控制器设计与循环函数方法相结合,设计了新颖的采样数据同步准则。合成的同步控制器不仅保证了具有非周期性采样的同步误差系统的渐近稳定性,而且还提供了令人满意的 H 控制性能。此外,通过将采样数据同步控制器与事件触发机制相结合的方法,可以提高通信效率。最后,通过仿真结果验证了所提出的理论贡献的数值示例。