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Generalized outer synchronization between non-dissipatively coupled complex networks with different-dimensional nodes

机译:具有不同维节点的非耗散耦合复杂网络之间的广义外部同步

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HighlightsAsymptotic and exponential generalized outer synchronization criteria are proposed.Only partial dynamics of each node in the response network is constrained by QUAD.Our network nodes may be non-dissipatively coupled and have different dimensions.Our network models possess different time-varying coupling configurations.Our networks have nonlinear inner functions and different time-varying delays.AbstractThis paper investigates the generalized outer synchronization (GOS) between two non-dissipatively coupled complex dynamical networks (CDNs) with different time-varying coupling delays. Our drive-response networks also possess nonlinear inner coupling functions and time-varying outer coupling configuration matrices. Besides, in our network models, the nodes in the same network are nonidentical and the nodes in different networks have different state dimensions. Asymptotic generalized outer synchronization (AGOS) and exponential generalized outer synchronization (EGOS) are defined for our CDNs. Our main objective in this paper is to design AGOS and EGOS controllers for our drive-response networks via the open-plus-closed-loop control technique. Distinguished from most existing literatures, it is the partial intrinsic dynamics of each node in response network that is restricted by the QUAD condition, which is easy to be satisfied. Representative simulation examples are given to verify the effectiveness and feasibility of our GOS theoretical results in this paper.
机译: 突出显示 提出了渐近和指数广义外部同步准则。 QUAD限制了响应网络中每个节点的局部动力学。 我们的网络节点可能是非耗散耦合的,并且具有不同的尺寸。 < ce:para id =“ para0004 “ view =” all“>我们的网络模型具有不同的时变耦合配置。 我们的网络具有非线性内部功能和不同的时变延迟。 摘要< / ce:section-title> 本文研究了广义外部同步(GOS)在两个具有不同时变耦合延迟的非耗散耦合复杂动力学网络(CDN)之间。我们的驱动响应网络还具有非线性内部耦合功能和时变外部耦合配置矩阵。此外,在我们的网络模型中,同一网络中的节点是不相同的,不同网络中的节点具有不同的状态维度。为我们的CDN定义了渐进广义外部同步(AGOS)和指数广义外部同步(EGOS)。我们本文的主要目标是通过开闭环控制技术为我们的驱动响应网络设计AGOS和EGOS控制器。与大多数现有文献不同的是,响应网络中每个节点的局部固有动力学受到QUAD条件的限制,这很容易满足。给出了具有代表性的仿真实例,验证了本文提出的GOS理论结果的有效性和可行性。

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