...
首页> 外文期刊>Discrete and continuous dynamical systems >FROM APPROXIMATE SYNCHRONIZATION TO IDENTICAL SYNCHRONIZATION IN COUPLED SYSTEMS
【24h】

FROM APPROXIMATE SYNCHRONIZATION TO IDENTICAL SYNCHRONIZATION IN COUPLED SYSTEMS

机译:从耦合系统中的近似同步到相同同步

获取原文
获取原文并翻译 | 示例
           

摘要

We establish a framework to investigate approximate synchronization of coupled systems under general coupling schemes. The units comprising the coupled systems may be nonidentical and the coupling functions are nonlinear with delays. Both delay-dependent and delay-independent criteria for approximate synchronization are derived, based on an approach termed sequential contracting. It is explored and elucidated that the synchronization error, the distance between the asymptotic state and the synchronous set, decreases with decreasing difference between subsystems, difference between the row sums of connection matrix, and difference of coupling time delays between different units. This error vanishes when these factors decay to zero, and approximate synchronization becomes identical synchronization for the coupled system comprising identical subsystems and connection matrix with identical row sums, and with identical coupling delays. The application of the present theory to nonlinearly coupled heterogeneous FitzHugh-Nagumo neurons is illustrated. We extend the analysis to study approximate synchronization and asymptotic synchronization for coupled Lorenz systems and show that for some coupling schemes, the synchronization error decreases as the coupling strength increases, whereas in another case, the error remains at a substantial level for large coupling strength.
机译:我们建立了一个框架,以研究一般耦合方案中的耦合系统的近似同步。包括耦合系统的单元可以是非识别的,并且耦合功能是具有延迟的非线性。基于所谓的顺序收缩,推导出延迟相关和延迟独立的近似同步标准。探索并阐明了同步误差,渐近状态与同步集之间的距离随着子系统之间的差异而降低,连接矩阵的行和之间的差异,以及不同单元之间的耦合时间延迟之间的差异。当这些因素衰减到零时,此错误会消失,并且近似同步对包含相同的子系统和具有相同行和和相同的行和的连接矩阵的耦合系统同步,并且具有相同的耦合延迟。说明本理论对非线性耦合的非均相FITZHUGH-NAGUMO神经元的应用。我们扩展了分析,研究耦合Lorenz系统的近似同步和渐近同步,并表明对于一些耦合方案,随着耦合强度的增加,同步误差减小,而在另一个情况下,误差保持在大的耦合强度的大量水平。

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